1. Executive Summary



righttopQIBA Profile:Lung Nodule Volume Assessment and Monitoring in Low Dose CT ScreeningStage: Publicly Reviewed (draft)-2794003244215When referencing this document, please use the following format:CT Volumetry Technical Committee. Lung Nodule Assessment in CT Screening Profile - 2017, Quantitative Imaging Biomarkers Alliance. Publicly Reviewed Draft. QIBA.00When referencing this document, please use the following format:CT Volumetry Technical Committee. Lung Nodule Assessment in CT Screening Profile - 2017, Quantitative Imaging Biomarkers Alliance. Publicly Reviewed Draft. QIBA.Table of Contents TOC \o "1-2" \h \z \u 1. Executive Summary PAGEREF _Toc482683226 \h 32. Clinical Context and Claims PAGEREF _Toc482683227 \h 43. Profile Activities PAGEREF _Toc482683228 \h 83.1. Product Validation PAGEREF _Toc482683229 \h 103.2. Staff Qualification PAGEREF _Toc482683230 \h 113.3. Equipment Quality Assurance PAGEREF _Toc482683231 \h 123.4. Protocol Design PAGEREF _Toc482683232 \h 133.5. Subject Selection PAGEREF _Toc482683233 \h 153.6. Subject Handling PAGEREF _Toc482683234 \h 163.7. Image Data Acquisition PAGEREF _Toc482683235 \h 193.8. Image Data Reconstruction PAGEREF _Toc482683236 \h 213.9. Image Quality Assurance PAGEREF _Toc482683237 \h 233.10. Image Analysis PAGEREF _Toc482683238 \h 244. Assessment Procedures PAGEREF _Toc482683239 \h 264.1. Technical Evaluation Methods PAGEREF _Toc482683240 \h 264.2. Equipment Vendor Assessment Procedures PAGEREF _Toc482683241 \h 294.3. Clinical Site Assessment Procedure PAGEREF _Toc482683242 \h 32References PAGEREF _Toc482683243 \h 34Appendices PAGEREF _Toc482683244 \h 37Appendix A: Acknowledgements and Attributions PAGEREF _Toc482683245 \h 37Appendix B: Background Information PAGEREF _Toc482683246 \h 39B.1 Summary of selected references on nodule volumetry accuracy PAGEREF _Toc482683247 \h 39B.2 Summary of selected references on nodule volumetry precision PAGEREF _Toc482683248 \h 39Appendix C: Metrology Methods PAGEREF _Toc482683249 \h 401. Executive SummaryThe goal of a QIBA Profile is to help achieve a useful level of performance for a given biomarker. The Claim (Section 2) describes the biomarker performance.The Profile Activities (Section 3) contribute to generating the biomarker. Requirements are placed on the Actors that participate in those activities as necessary to achieve the Claim. Assessment Procedures (Section 4) defines the technical methods to be used for evaluating compliance with profile requirements. This includes the steps needed for clinical sites and equipment vendors to be compliant with the profile.This QIBA Profile (Lung Nodule Volume Assessment and Monitoring in Low Dose CT Screening) addresses the accuracy and precision of quantitative CT volumetry as applied to solid lung nodules of 6-12 mm diameter. It places requirements on Acquisition Devices, Technologists, Radiologists and Image Analysis Tools involved in activities including Periodic Equipment Quality Assurance, Subject Selection, Subject Handling, Image Data Acquisition, Image Data Reconstruction, Image Quality Assurance, and Image Analysis. The requirements are focused on achieving sufficient accuracy and avoiding unnecessary variability of the lung nodule volume measurement.Two sets of claims are provided within this profile. The first claim establishes 95% confidence intervals for volumetric measurement of solid lung nodules that fall within four different diameter and volume size ranges. The second claim provides guidance on the amount of volumetric change percentage needed for a nodule to start to exhibit true change with 95% confidence. In addition, the second claim also provides guidance on the 95% confidence interval for a volumetric size change measurement, again based on the size of the nodule at two time points.This document is intended to help clinicians basing decisions on this biomarker, imaging staff generating this biomarker, vendor staff developing related products, purchasers of such products and investigators designing trials with imaging endpoints.Note that this Profile document only states requirements to achieve the claim, not “requirements on standard of care.” Further, meeting the goals of this Profile is secondary to properly caring for the patient.QIBA Profiles addressing other imaging biomarkers using CT, MRI, PET and Ultrasound can be found at qibawiki..2. Clinical Context and ClaimsClinical ContextThe clinical context of this profile is the quantification of volumes and volume changes over time of solid lung nodules with a longest diameter between 6 mm and 12 mm. Nodules with diameter ≥ 12 mm (volume ≥ 905 mm3) are the subject of the document “QIBA Profile: CT Tumor Volume Change (CTV-1)”.Compliance with this Profile by all relevant staff and equipment supports the following claimsClaim 1: Nodule VolumeFor a measured nodule volume of Y, and a CV as specified in table 1, the 95% confidence interval for the true nodule volume is Y ± (1.96 Y CV).Claim 2: Nodule Volume ChangeA measured nodule volume percentage change of X indicates that a true change in nodule volume has occurred if X > (2.77 x CV1 x 100), with 95% confidence. If Y1 and Y2 are the volume measurements at the two time points, and CV1 and CV2 are the corresponding values from Table 1, then the 95% confidence interval for the nodule volume change Z = (Y2-Y1) ± 1.96 ([Y1 CV1]2 + [Y2 CV2]2).These Claims hold when: the nodule is completely solidthe nodule longest dimension in the transverse (axial) plane is between 6 mm (volume 113 mm3) and 12 mm (volume 905 mm3) at the first time pointthe nodule’s shortest diameter in any dimension is at least 60% of the nodule’s longest diameter in any dimension (i.e., the nodule shape does not deviate excessively from spherical)the nodule is measurable at both time points (i.e., margins are distinct from surrounding structures of similar attenuation and geometrically simple enough to be segmented using automated software without manual editing)Table 1. Coefficients of Variation (CV)NoduleDiameter (mm)NoduleVolume (mm3)Coefficient of Variation (CV)True Volume95% CI Limits (%)6 mm1130.29± 57%7 mm1540.23± 45%8 mm2680.19± 37%9 mm3820.16± 31%10 mm5240.14± 27%11 mm6970.12± 24%12 mm9050.11± 22%DiscussionLow dose CT provides an effective means of detecting and monitoring pulmonary nodules, and can lead to increased survival PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5IZW5zY2hrZTwvQXV0aG9yPjxZZWFyPjIwMDY8L1llYXI+

PFJlY051bT4xNjkzPC9SZWNOdW0+PERpc3BsYXlUZXh0PigxKTwvRGlzcGxheVRleHQ+PHJlY29y

ZD48cmVjLW51bWJlcj4xNjkzPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjAiPjE2OTM8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlbnNjaGtl

LCBDLiBJLjwvYXV0aG9yPjxhdXRob3I+WWFua2VsZXZpdHosIEQuIEYuPC9hdXRob3I+PGF1dGhv

cj5MaWJieSwgRC4gTS48L2F1dGhvcj48YXV0aG9yPlBhc21hbnRpZXIsIE0uIFcuPC9hdXRob3I+

PGF1dGhvcj5TbWl0aCwgSi4gUC48L2F1dGhvcj48YXV0aG9yPk1pZXR0aW5lbiwgTy4gUy48L2F1

dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5OZXcgWW9yayBQcmVz

Ynl0ZXJpYW4gSG9zcGl0YWwtV2VpbGwgTWVkaWNhbCBDb2xsZWdlIG9mIENvcm5lbGwgVW5pdmVy

c2l0eSwgTmV3IFlvcmsgMTAwMjEsIFVTQS4gY2hlbnNjaEBtZWQuY29ybmVsbC5lZHU8L2F1dGgt

YWRkcmVzcz48dGl0bGVzPjx0aXRsZT5TdXJ2aXZhbCBvZiBwYXRpZW50cyB3aXRoIHN0YWdlIEkg

bHVuZyBjYW5jZXIgZGV0ZWN0ZWQgb24gQ1Qgc2NyZWVuaW5nPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPk4gRW5nbCBKIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPk4gRW5nbCBKIE1lZDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjE3

NjMtNzE8L3BhZ2VzPjx2b2x1bWU+MzU1PC92b2x1bWU+PG51bWJlcj4xNzwvbnVtYmVyPjxrZXl3

b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3

b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdv

cmQ+PGtleXdvcmQ+QmlvcHN5PC9rZXl3b3JkPjxrZXl3b3JkPkNhcmNpbm9tYS9tb3J0YWxpdHkv

cGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5DYXNlLUNvbnRyb2wgU3R1

ZGllczwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9r

ZXl3b3JkPjxrZXl3b3JkPkxvbmdpdHVkaW5hbCBTdHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPkx1

bmcvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL21vcnRhbGl0

eS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+TmVvcGxhc20gU3RhZ2luZzwv

a2V5d29yZD48a2V5d29yZD5PY2N1cGF0aW9uYWwgRXhwb3N1cmUvYWR2ZXJzZSBlZmZlY3RzPC9r

ZXl3b3JkPjxrZXl3b3JkPlJlc2VhcmNoIFN1cHBvcnQsIE4uSS5ILiwgRXh0cmFtdXJhbDwva2V5

d29yZD48a2V5d29yZD5SZXNlYXJjaCBTdXBwb3J0LCBOb24tVS5TLiBHb3YmYXBvczt0PC9rZXl3

b3JkPjxrZXl3b3JkPlJlc2VhcmNoIFN1cHBvcnQsIFUuUy4gR292JmFwb3M7dCwgTm9uLVAuSC5T

Ljwva2V5d29yZD48a2V5d29yZD5TbW9raW5nL2FkdmVyc2UgZWZmZWN0czwva2V5d29yZD48a2V5

d29yZD5TdXJ2aXZhbCBSYXRlPC9rZXl3b3JkPjxrZXl3b3JkPlRvYmFjY28gU21va2UgUG9sbHV0

aW9uL2FkdmVyc2UgZWZmZWN0czwva2V5d29yZD48a2V5d29yZD4qVG9tb2dyYXBoeSwgWC1SYXkg

Q29tcHV0ZWQ8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNjwveWVhcj48cHVi

LWRhdGVzPjxkYXRlPk9jdCAyNjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24t

bnVtPjE3MDY1NjM3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFt

cDtkYj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xNzA2NTYzNzwvdXJs

PjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+PC9FbmROb3RlPgB=

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5IZW5zY2hrZTwvQXV0aG9yPjxZZWFyPjIwMDY8L1llYXI+

PFJlY051bT4xNjkzPC9SZWNOdW0+PERpc3BsYXlUZXh0PigxKTwvRGlzcGxheVRleHQ+PHJlY29y

ZD48cmVjLW51bWJlcj4xNjkzPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjAiPjE2OTM8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlbnNjaGtl

LCBDLiBJLjwvYXV0aG9yPjxhdXRob3I+WWFua2VsZXZpdHosIEQuIEYuPC9hdXRob3I+PGF1dGhv

cj5MaWJieSwgRC4gTS48L2F1dGhvcj48YXV0aG9yPlBhc21hbnRpZXIsIE0uIFcuPC9hdXRob3I+

PGF1dGhvcj5TbWl0aCwgSi4gUC48L2F1dGhvcj48YXV0aG9yPk1pZXR0aW5lbiwgTy4gUy48L2F1

dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5OZXcgWW9yayBQcmVz

Ynl0ZXJpYW4gSG9zcGl0YWwtV2VpbGwgTWVkaWNhbCBDb2xsZWdlIG9mIENvcm5lbGwgVW5pdmVy

c2l0eSwgTmV3IFlvcmsgMTAwMjEsIFVTQS4gY2hlbnNjaEBtZWQuY29ybmVsbC5lZHU8L2F1dGgt

YWRkcmVzcz48dGl0bGVzPjx0aXRsZT5TdXJ2aXZhbCBvZiBwYXRpZW50cyB3aXRoIHN0YWdlIEkg

bHVuZyBjYW5jZXIgZGV0ZWN0ZWQgb24gQ1Qgc2NyZWVuaW5nPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPk4gRW5nbCBKIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPk4gRW5nbCBKIE1lZDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjE3

NjMtNzE8L3BhZ2VzPjx2b2x1bWU+MzU1PC92b2x1bWU+PG51bWJlcj4xNzwvbnVtYmVyPjxrZXl3

b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3

b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdv

cmQ+PGtleXdvcmQ+QmlvcHN5PC9rZXl3b3JkPjxrZXl3b3JkPkNhcmNpbm9tYS9tb3J0YWxpdHkv

cGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5DYXNlLUNvbnRyb2wgU3R1

ZGllczwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9r

ZXl3b3JkPjxrZXl3b3JkPkxvbmdpdHVkaW5hbCBTdHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPkx1

bmcvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL21vcnRhbGl0

eS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+TmVvcGxhc20gU3RhZ2luZzwv

a2V5d29yZD48a2V5d29yZD5PY2N1cGF0aW9uYWwgRXhwb3N1cmUvYWR2ZXJzZSBlZmZlY3RzPC9r

ZXl3b3JkPjxrZXl3b3JkPlJlc2VhcmNoIFN1cHBvcnQsIE4uSS5ILiwgRXh0cmFtdXJhbDwva2V5

d29yZD48a2V5d29yZD5SZXNlYXJjaCBTdXBwb3J0LCBOb24tVS5TLiBHb3YmYXBvczt0PC9rZXl3

b3JkPjxrZXl3b3JkPlJlc2VhcmNoIFN1cHBvcnQsIFUuUy4gR292JmFwb3M7dCwgTm9uLVAuSC5T

Ljwva2V5d29yZD48a2V5d29yZD5TbW9raW5nL2FkdmVyc2UgZWZmZWN0czwva2V5d29yZD48a2V5

d29yZD5TdXJ2aXZhbCBSYXRlPC9rZXl3b3JkPjxrZXl3b3JkPlRvYmFjY28gU21va2UgUG9sbHV0

aW9uL2FkdmVyc2UgZWZmZWN0czwva2V5d29yZD48a2V5d29yZD4qVG9tb2dyYXBoeSwgWC1SYXkg

Q29tcHV0ZWQ8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNjwveWVhcj48cHVi

LWRhdGVzPjxkYXRlPk9jdCAyNjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24t

bnVtPjE3MDY1NjM3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFt

cDtkYj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xNzA2NTYzNzwvdXJs

PjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+PC9FbmROb3RlPgB=

ADDIN EN.CITE.DATA (1) and reduced mortality ADDIN EN.CITE <EndNote><Cite><Author>Aberle</Author><Year>2011</Year><RecNum>2043</RecNum><DisplayText>(2)</DisplayText><record><rec-number>2043</rec-number><foreign-keys><key app="EN" db-id="fvzx95zaxvdvakexsaapvr5cefv0sdsfad0d" timestamp="1330282842">2043</key></foreign-keys><ref-type name="Journal Article">17</ref-type><contributors><authors><author>Aberle, D. R.</author><author>Adams, A. M.</author><author>Berg, C. D.</author><author>Black, W. C.</author><author>Clapp, J. D.</author><author>Fagerstrom, R. M.</author><author>Gareen, I. F.</author><author>Gatsonis, C.</author><author>Marcus, P. M.</author><author>Sicks, J. D.</author></authors></contributors><titles><title>Reduced lung-cancer mortality with low-dose computed tomographic screening</title><secondary-title>N Engl J Med</secondary-title><alt-title>The New England journal of medicine</alt-title></titles><periodical><full-title>N Engl J Med</full-title></periodical><pages>395-409</pages><volume>365</volume><number>5</number><edition>2011/07/01</edition><keywords><keyword>Aged</keyword><keyword>Bias (Epidemiology)</keyword><keyword>Female</keyword><keyword>Humans</keyword><keyword>Incidence</keyword><keyword>Lung Neoplasms/*mortality/prevention &amp; control/*radiography</keyword><keyword>Male</keyword><keyword>Middle Aged</keyword><keyword>Patient Compliance</keyword><keyword>Radiography, Thoracic</keyword><keyword>*Tomography, X-Ray Computed/adverse effects/methods</keyword></keywords><dates><year>2011</year><pub-dates><date>Aug 4</date></pub-dates></dates><isbn>1533-4406 (Electronic)&#xD;0028-4793 (Linking)</isbn><accession-num>21714641</accession-num><work-type>Comparative Study&#xD;Multicenter Study&#xD;Randomized Controlled Trial&#xD;Research Support, N.I.H., Extramural</work-type><urls><related-urls><url>;(2) in individuals at high risk for lung cancer. Size quantification on serial imaging is helpful in evaluating whether a pulmonary nodule is benign or malignant. Currently, pulmonary nodule measurements most commonly are obtained as the average of two perpendicular dimensions on axial slices. Investigators have suggested that automated quantification of whole nodule volume could solve some of the limitations of manual diameter measurements PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5ZYW5rZWxldml0ejwvQXV0aG9yPjxZZWFyPjIwMDA8L1ll

YXI+PFJlY051bT4yMTM3PC9SZWNOdW0+PERpc3BsYXlUZXh0PigzLTkpPC9EaXNwbGF5VGV4dD48

cmVjb3JkPjxyZWMtbnVtYmVyPjIxMzc8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFw

cD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVz

dGFtcD0iMTQzOTIzMjEzMyI+MjEzNzwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1l

PSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxh

dXRob3I+WWFua2VsZXZpdHosIEQuIEYuPC9hdXRob3I+PGF1dGhvcj5SZWV2ZXMsIEEuIFAuPC9h

dXRob3I+PGF1dGhvcj5Lb3N0aXMsIFcuIEouPC9hdXRob3I+PGF1dGhvcj5aaGFvLCBCLjwvYXV0

aG9yPjxhdXRob3I+SGVuc2Noa2UsIEMuIEkuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0

b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE5ldyBZb3JrIFByZXNi

eXRlcmlhbiBIb3NwaXRhbC1XZWlsbCBDb3JuZWxsIE1lZGljYWwgQ2VudGVyLCBCdWlsZGluZyBT

dGFyci04QTIzLCA1MjUgRSA2OHRoIFN0LCBOZXcgWW9yaywgTlkgMTAwMjEsIFVTQS4gZHlhbmtl

bGVAbWFpbC5tZWQuY29ybmVsbC5lZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5TbWFs

bCBwdWxtb25hcnkgbm9kdWxlczogdm9sdW1ldHJpY2FsbHkgZGV0ZXJtaW5lZCBncm93dGggcmF0

ZXMgYmFzZWQgb24gQ1QgZXZhbHVhdGlvbjwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xv

Z3k8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0

bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3Blcmlv

ZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48

L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4yNTEtNjwvcGFnZXM+PHZvbHVtZT4yMTc8L3ZvbHVtZT48

bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWdlZDwva2V5d29yZD48a2V5d29y

ZD5EaWFnbm9zaXMsIERpZmZlcmVudGlhbDwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdv

cmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkltYWdlIFByb2Nlc3NpbmcsIENv

bXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL3BhdGhvbG9n

eS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1p

ZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnBhdGhvbG9neS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwv

a2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDA8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3Q8L2Rh

dGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4wMDMzLTg0MTkgKFByaW50KSYjeEQ7MDAzMy04

NDE5IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xMTAxMjQ1MzwvYWNjZXNzaW9uLW51

bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1

Ym1lZC8xMTAxMjQ1MzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+MTAuMTE0OC9yYWRpb2xvZ3kuMjE3LjEucjAwb2MzMzI1MTwvZWxlY3Ryb25pYy1y

ZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Qm9sdGU8L0F1dGhvcj48

WWVhcj4yMDA3PC9ZZWFyPjxSZWNOdW0+MjE0NzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE0NzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIyNjUyIj4y

MTQ3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Cb2x0ZSwgSC48L2F1

dGhvcj48YXV0aG9yPkphaG5rZSwgVC48L2F1dGhvcj48YXV0aG9yPlNjaGFmZXIsIEYuIEsuPC9h

dXRob3I+PGF1dGhvcj5XZW5rZSwgUi48L2F1dGhvcj48YXV0aG9yPkhvZmZtYW5uLCBCLjwvYXV0

aG9yPjxhdXRob3I+RnJlaXRhZy1Xb2xmLCBTLjwvYXV0aG9yPjxhdXRob3I+RGlja2VuLCBWLjwv

YXV0aG9yPjxhdXRob3I+S3VobmlnaywgSi4gTS48L2F1dGhvcj48YXV0aG9yPkxvaG1hbm4sIEou

PC9hdXRob3I+PGF1dGhvcj5Wb3NzLCBTLjwvYXV0aG9yPjxhdXRob3I+S25vc3MsIE4uPC9hdXRo

b3I+PGF1dGhvcj5IZWxsZXIsIE0uPC9hdXRob3I+PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhv

cj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERp

YWdub3N0aWMgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IEhvc3BpdGFsIFNjaGxlc3dpZy1Ib2xzdGVp

biBDYW1wdXMgS2llbCwgQXJub2xkLUhlbGxlciBTdHJhc3NlIDksIDI0MTA1IEtpZWwsIEdlcm1h

bnkuIGhlbmRyaWtib2x0ZUByYWQudW5pLWtpZWwuZGU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0

aXRsZT5JbnRlcm9ic2VydmVyLXZhcmlhYmlsaXR5IG9mIGx1bmcgbm9kdWxlIHZvbHVtZXRyeSBj

b25zaWRlcmluZyBkaWZmZXJlbnQgc2VnbWVudGF0aW9uIGFsZ29yaXRobXMgYW5kIG9ic2VydmVy

IHRyYWluaW5nIGxldmVsczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5FdXIgSiBSYWRpb2w8L3Nl

Y29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9h

bHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyb3Bl

YW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFn

ZXM+Mjg1LTk1PC9wYWdlcz48dm9sdW1lPjY0PC92b2x1bWU+PG51bWJlcj4yPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPipBbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkFuaW1hbHM8L2tl

eXdvcmQ+PGtleXdvcmQ+Q2FsaWJyYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+RGlzZWFzZSBNb2Rl

bHMsIEFuaW1hbDwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5MdW5nIERpc2Vhc2VzLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBW

YXJpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9sb2d5LyplZHVjYXRpb248L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9sb2d5IEluZm9ybWF0aW9uIFN5c3RlbXM8L2tleXdvcmQ+PGtleXdvcmQ+

U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dy

YXBoeSwgU3BpcmFsIENvbXB1dGVkL21ldGhvZHMvKnN0YXRpc3RpY3MgJmFtcDsgbnVtZXJpY2Fs

IGRhdGE8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRh

dGVzPjxkYXRlPk5vdjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjA3MjAtMDQ4WCAo

UHJpbnQpJiN4RDswNzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3NDMz

NTk1PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5j

YmkubmxtLm5paC5nb3YvcHVibWVkLzE3NDMzNTk1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxz

PjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAwNy4wMi4wMzE8L2Vs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdpZXJh

ZGE8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MTc5MzwvUmVjTnVtPjxyZWNvcmQ+

PHJlYy1udW1iZXI+MTc5MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIg

ZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIw

Ij4xNzkzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5HaWVyYWRhLCBE

LiBTLjwvYXV0aG9yPjxhdXRob3I+UGlsZ3JhbSwgVC4gSy48L2F1dGhvcj48YXV0aG9yPkZvcmQs

IE0uPC9hdXRob3I+PGF1dGhvcj5GYWdlcnN0cm9tLCBSLiBNLjwvYXV0aG9yPjxhdXRob3I+Q2h1

cmNoLCBULiBSLjwvYXV0aG9yPjxhdXRob3I+TmF0aCwgSC48L2F1dGhvcj48YXV0aG9yPkdhcmcs

IEsuPC9hdXRob3I+PGF1dGhvcj5TdHJvbGxvLCBELiBDLjwvYXV0aG9yPjwvYXV0aG9ycz48L2Nv

bnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9s

b2d5LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5n

c2hpZ2h3YXkgQmx2ZCwgU3QuIExvdWlzLCBNTyA2MzEwNSwgVVNBLiBnaWVyYWRhZEB3dXN0bC5l

ZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5MdW5nIGNhbmNlcjogaW50ZXJvYnNlcnZl

ciBhZ3JlZW1lbnQgb24gaW50ZXJwcmV0YXRpb24gb2YgcHVsbW9uYXJ5IGZpbmRpbmdzIGF0IGxv

dy1kb3NlIENUIHNjcmVlbmluZzwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3Nl

Y29uZGFyeS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4yNjUtNzI8L3BhZ2VzPjx2b2x1bWU+MjQ2

PC92b2x1bWU+PG51bWJlcj4xPC9udW1iZXI+PGRhdGVzPjx5ZWFyPjIwMDg8L3llYXI+PHB1Yi1k

YXRlcz48ZGF0ZT5KYW48L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4x

ODAyNDQzNjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3

dy5uY2JpLm5sbS5uaWguZ292L2VudHJlei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9

UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9uJmFtcDtsaXN0X3VpZHM9MTgwMjQ0MzYgPC91cmw+PC9y

ZWxhdGVkLXVybHM+PC91cmxzPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPnZhbiBLbGF2

ZXJlbjwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTQwPC9SZWNOdW0+PHJlY29y

ZD48cmVjLW51bWJlcj4yMTQwPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjE0MzkyMzI0NjkiPjIxNDA8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91

cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9y

PnZhbiBLbGF2ZXJlbiwgUi4gSi48L2F1dGhvcj48YXV0aG9yPk91ZGtlcmssIE0uPC9hdXRob3I+

PGF1dGhvcj5Qcm9rb3AsIE0uPC9hdXRob3I+PGF1dGhvcj5TY2hvbHRlbiwgRS4gVC48L2F1dGhv

cj48YXV0aG9yPk5hY2thZXJ0cywgSy48L2F1dGhvcj48YXV0aG9yPlZlcm5ob3V0LCBSLjwvYXV0

aG9yPjxhdXRob3I+dmFuIEllcnNlbCwgQy4gQS48L2F1dGhvcj48YXV0aG9yPnZhbiBkZW4gQmVy

Z2gsIEsuIEEuPC9hdXRob3I+PGF1dGhvcj52YW4gJmFwb3M7dCBXZXN0ZWluZGUsIFMuPC9hdXRo

b3I+PGF1dGhvcj52YW4gZGVyIEFhbHN0LCBDLjwvYXV0aG9yPjxhdXRob3I+VGh1bm5pc3Nlbiwg

RS48L2F1dGhvcj48YXV0aG9yPlh1LCBELiBNLjwvYXV0aG9yPjxhdXRob3I+V2FuZywgWS48L2F1

dGhvcj48YXV0aG9yPlpoYW8sIFkuPC9hdXRob3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwvYXV0

aG9yPjxhdXRob3I+ZGUgSG9vcCwgQi4gSi48L2F1dGhvcj48YXV0aG9yPkdyb2VuLCBILiBKLjwv

YXV0aG9yPjxhdXRob3I+ZGUgQm9jaywgRy4gSC48L2F1dGhvcj48YXV0aG9yPnZhbiBPb2lqZW4s

IFAuPC9hdXRob3I+PGF1dGhvcj5XZWVuaW5rLCBDLjwvYXV0aG9yPjxhdXRob3I+VmVyc2NoYWtl

bGVuLCBKLjwvYXV0aG9yPjxhdXRob3I+TGFtbWVycywgSi4gVy48L2F1dGhvcj48YXV0aG9yPlRp

bWVucywgVy48L2F1dGhvcj48YXV0aG9yPldpbGxlYnJhbmQsIEQuPC9hdXRob3I+PGF1dGhvcj5W

aW5rLCBBLjwvYXV0aG9yPjxhdXRob3I+TWFsaSwgVy48L2F1dGhvcj48YXV0aG9yPmRlIEtvbmlu

ZywgSC4gSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIFB1bG1vbm9sb2d5LCBFcmFzbXVzIE1lZGljYWwgQ2VudGVyLCAzMDAwIENB

IFJvdHRlcmRhbSwgVGhlIE5ldGhlcmxhbmRzLiByLmoudmFua2xhdmVyZW5AZXJhc211c21jLm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+TWFuYWdlbWVudCBvZiBsdW5nIG5vZHVsZXMg

ZGV0ZWN0ZWQgYnkgdm9sdW1lIENUIHNjYW5uaW5nPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPk4g

RW5nbCBKIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+VGhlIE5ldyBFbmdsYW5kIGpv

dXJuYWwgb2YgbWVkaWNpbmU8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5OIEVuZ2wgSiBNZWQ8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4yMjIxLTk8

L3BhZ2VzPjx2b2x1bWU+MzYxPC92b2x1bWU+PG51bWJlcj4yMzwvbnVtYmVyPjxrZXl3b3Jkcz48

a2V5d29yZD5Gb2xsb3ctVXAgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9w

bGFzbXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+UHJvZ25vc2lzPC9rZXl3b3JkPjxrZXl3b3JkPlJpc2sgRmFjdG9yczwva2V5d29y

ZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+

U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRo

b2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5LCBYLVJheSBD

b21wdXRlZC9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlR1bW9yIEJ1cmRlbjwva2V5d29yZD48

L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RGVjIDM8

L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTMzLTQ0MDYgKEVsZWN0cm9uaWMpJiN4

RDswMDI4LTQ3OTMgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE5OTU1NTI0PC9hY2Nl

c3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5p

aC5nb3YvcHVibWVkLzE5OTU1NTI0PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJv

bmljLXJlc291cmNlLW51bT4xMC4xMDU2L05FSk1vYTA5MDYwODU8L2VsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPlNpbmdoPC9BdXRob3I+PFllYXI+

MjAxMTwvWWVhcj48UmVjTnVtPjIwMzM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIwMzM8

L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2

ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTMyNzM1Mzk4NCI+MjAzMzwv

a2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9y

ZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+U2luZ2gsIFMuPC9hdXRob3I+

PGF1dGhvcj5QaW5za3ksIFAuPC9hdXRob3I+PGF1dGhvcj5GaW5lYmVyZywgTi4gUy48L2F1dGhv

cj48YXV0aG9yPkdpZXJhZGEsIEQuIFMuPC9hdXRob3I+PGF1dGhvcj5HYXJnLCBLLjwvYXV0aG9y

PjxhdXRob3I+U3VuLCBZLjwvYXV0aG9yPjxhdXRob3I+TmF0aCwgUC4gSC48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgVW5pdmVyc2l0eSBvZiBBbGFiYW1hIEhvc3BpdGFscywgNjE5IDE5dGggU3QgU291dGgsIEJp

cm1pbmdoYW0sIEFMIDM1MjQ5LCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+RXZh

bHVhdGlvbiBvZiByZWFkZXIgdmFyaWFiaWxpdHkgaW4gdGhlIGludGVycHJldGF0aW9uIG9mIGZv

bGxvdy11cCBDVCBzY2FucyBhdCBsdW5nIGNhbmNlciBzY3JlZW5pbmc8L3RpdGxlPjxzZWNvbmRh

cnktdGl0bGU+UmFkaW9sb2d5PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8

L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1

bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xv

Z3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MjYzLTcwPC9wYWdlcz48dm9s

dW1lPjI1OTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxlZGl0aW9uPjIwMTEvMDEvMjE8L2Vk

aXRpb24+PGtleXdvcmRzPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8

L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NYXNzIFNjcmVlbmluZy8q

c3RhdGlzdGljcyAmYW1wOyBudW1lcmljYWwgZGF0YTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUg

QWdlZDwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtleXdv

cmQ+UHJldmFsZW5jZTwva2V5d29yZD48a2V5d29yZD5SZWZlcnJhbCBhbmQgQ29uc3VsdGF0aW9u

Lyp1dGlsaXphdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0

czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKnN0YXRpc3RpY3MgJmFtcDsgbnVt

ZXJpY2FsIGRhdGE8L2tleXdvcmQ+PGtleXdvcmQ+VW5pdGVkIFN0YXRlcy9lcGlkZW1pb2xvZ3k8

L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMTwveWVhcj48cHViLWRhdGVzPjxk

YXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1MjctMTMxNSAoRWxlY3Ry

b25pYykmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjEyNDgy

MzI8L2FjY2Vzc2lvbi1udW0+PHdvcmstdHlwZT5SYW5kb21pemVkIENvbnRyb2xsZWQgVHJpYWwm

I3hEO1Jlc2VhcmNoIFN1cHBvcnQsIE4uSS5ILiwgRXh0cmFtdXJhbDwvd29yay10eXBlPjx1cmxz

PjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIx

MjQ4MjMyPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxjdXN0b20yPjMwNjQ4MTk8L2N1c3Rv

bTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjEwMTAxMjU0PC9lbGVj

dHJvbmljLXJlc291cmNlLW51bT48bGFuZ3VhZ2U+ZW5nPC9sYW5ndWFnZT48L3JlY29yZD48L0Np

dGU+PENpdGU+PEF1dGhvcj5QZXRyaWNrPC9BdXRob3I+PFllYXI+MjAxNDwvWWVhcj48UmVjTnVt

PjIxNDY8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDY8L3JlYy1udW1iZXI+PGZvcmVp

Z24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYw

c2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyMjI0NyI+MjE0Njwva2V5PjwvZm9yZWlnbi1rZXlz

PjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0

b3JzPjxhdXRob3JzPjxhdXRob3I+UGV0cmljaywgTi48L2F1dGhvcj48YXV0aG9yPktpbSwgSC4g

Si48L2F1dGhvcj48YXV0aG9yPkNsdW5pZSwgRC48L2F1dGhvcj48YXV0aG9yPkJvcnJhZGFpbGUs

IEsuPC9hdXRob3I+PGF1dGhvcj5Gb3JkLCBSLjwvYXV0aG9yPjxhdXRob3I+WmVuZywgUi48L2F1

dGhvcj48YXV0aG9yPkdhdnJpZWxpZGVzLCBNLiBBLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdy

YXksIE0uIEYuPC9hdXRob3I+PGF1dGhvcj5MdSwgWi4gUS48L2F1dGhvcj48YXV0aG9yPkZlbmlt

b3JlLCBDLjwvYXV0aG9yPjxhdXRob3I+WmhhbywgQi48L2F1dGhvcj48YXV0aG9yPkJ1Y2tsZXIs

IEEuIEouPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+Q2Vu

dGVyIGZvciBEZXZpY2VzIGFuZCBSYWRpb2xvZ2ljYWwgSGVhbHRoLCBVLlMuIEZvb2QgYW5kIERy

dWcgQWRtaW5pc3RyYXRpb24sIFdPNjItNDExOCwgMTA5MDMgTmV3IEhhbXBzaGlyZSBBdmVudWUs

IFNpbHZlciBTcHJpbmcsIE1EIDIwOTkzLTAwMDIuIEVsZWN0cm9uaWMgYWRkcmVzczogbmljaG9s

YXMucGV0cmlja0BmZGEuaGhzLmdvdi4mI3hEO0RlcGFydG1lbnQgb2YgUmFkaW9sb2dpY2FsIFNj

aWVuY2VzLCBEYXZpZCBHZWZmZW4gU2Nob29sIG9mIE1lZGljaW5lIGF0IFVuaXZlcnNpdHkgb2Yg

Q2FsaWZvcm5pYSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMsIENhbGlmb3JuaWE7IERlcGFydG1l

bnQgb2YgQmlvc3RhdGlzdGljcywgRmllbGRpbmcgU2Nob29sIG9mIGEgUHVibGljIEhlYWx0aCBh

dCBVbml2ZXJzaXR5IG9mIENhbGlmb3JuaWEgTG9zIEFuZ2VsZXMsIExvcyBBbmdlbGVzLCBDYWxp

Zm9ybmlhLiYjeEQ7Q29yZUxhYiBQYXJ0bmVycywgSW5jLiwgUHJpbmNldG9uLCBOSi4mI3hEO0Ns

aW5pY2FsIFRyaWFscyBJbWFnaW5nIENvbnN1bHRpbmcsIExMQy4sIEJlbGxlIE1lYWQsIE5ldyBK

ZXJzZXkuJiN4RDtDZW50ZXIgZm9yIERldmljZXMgYW5kIFJhZGlvbG9naWNhbCBIZWFsdGgsIFUu

Uy4gRm9vZCBhbmQgRHJ1ZyBBZG1pbmlzdHJhdGlvbiwgV082Mi00MTE4LCAxMDkwMyBOZXcgSGFt

cHNoaXJlIEF2ZW51ZSwgU2lsdmVyIFNwcmluZywgTUQgMjA5OTMtMDAwMi4mI3hEO0RlcGFydG1l

bnQgb2YgUmFkaW9sb2dpY2FsIFNjaWVuY2VzLCBEYXZpZCBHZWZmZW4gU2Nob29sIG9mIE1lZGlj

aW5lIGF0IFVuaXZlcnNpdHkgb2YgQ2FsaWZvcm5pYSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMs

IENhbGlmb3JuaWEuJiN4RDtOYXRpb25hbCBJbnN0aXR1dGUgb2YgU3RhbmRhcmRzIGFuZCBUZWNo

bm9sb2d5LCBHYWl0aGVyc2J1cmcsIE1ELiYjeEQ7RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIENv

bHVtYmlhIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIE5ldyBZb3JrLCBOZXcgWW9yay4mI3hE

O0VsdWNpZCBCaW9pbWFnaW5nIEluYy4sIFdlbmhhbSwgTUEuPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q29tcGFyaXNvbiBvZiAxRCwgMkQsIGFuZCAzRCBub2R1bGUgc2l6aW5nIG1ldGhv

ZHMgYnkgcmFkaW9sb2dpc3RzIGZvciBzcGhlcmljYWwgYW5kIGNvbXBsZXggbm9kdWxlcyBvbiB0

aG9yYWNpYyBDVCBwaGFudG9tIGltYWdlczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5BY2FkIFJh

ZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWNhZGVtaWMgcmFkaW9sb2d5PC9hbHQt

dGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QWNhZCBSYWRpb2w8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkZW1pYyBS

YWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MzAtNDA8L3BhZ2Vz

Pjx2b2x1bWU+MjE8L3ZvbHVtZT48bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+

RXF1aXBtZW50IERlc2lnbjwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdv

cmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+

T2JzZXJ2ZXIgVmFyaWF0aW9uPC9rZXl3b3JkPjxrZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwv

a2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1

dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGh5LCBUaG9y

YWNpYy9pbnN0cnVtZW50YXRpb24vKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNp

YmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNp

ZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlv

Z3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL2luc3Ry

dW1lbnRhdGlvbi8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDE0

PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SmFuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlz

Ym4+MTg3OC00MDQ2IChFbGVjdHJvbmljKSYjeEQ7MTA3Ni02MzMyIChMaW5raW5nKTwvaXNibj48

YWNjZXNzaW9uLW51bT4yNDMzMTI2MjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMzMTI2MjwvdXJsPjwv

cmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAxNi9qLmFj

cmEuMjAxMy4wOS4wMjA8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48

Q2l0ZT48QXV0aG9yPk11bHNoaW5lPC9BdXRob3I+PFllYXI+MjAxNTwvWWVhcj48UmVjTnVtPjIx

Mzk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxMzk8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMTQzOTIzMjIzMiI+MjEzOTwva2V5PjwvZm9yZWlnbi1rZXlzPjxy

ZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3Jz

PjxhdXRob3JzPjxhdXRob3I+TXVsc2hpbmUsIEouIEwuPC9hdXRob3I+PGF1dGhvcj5HaWVyYWRh

LCBELiBTLjwvYXV0aG9yPjxhdXRob3I+QXJtYXRvLCBTLiBHLiwgM3JkPC9hdXRob3I+PGF1dGhv

cj5BdmlsYSwgUi4gUy48L2F1dGhvcj48YXV0aG9yPllhbmtlbGV2aXR6LCBELiBGLjwvYXV0aG9y

PjxhdXRob3I+S2F6ZXJvb25pLCBFLiBBLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdyYXksIE0u

IEYuPC9hdXRob3I+PGF1dGhvcj5CdWNrbGVyLCBBLiBKLjwvYXV0aG9yPjxhdXRob3I+U3VsbGl2

YW4sIEQuIEMuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

UnVzaCBVbml2ZXJzaXR5LCBDaGljYWdvLCBJbGxpbm9pcy4gRWxlY3Ryb25pYyBhZGRyZXNzOiBq

bXVsc2hpbkBydXNoLmVkdS4mI3hEO01hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5

LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCBTdCBMb3VpcywgTWlz

c291cmkuJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBDaGljYWdv

LCBDaGljYWdvLCBJbGxpbm9pcy4mI3hEO1VTIERlcGFydG1lbnQgb2YgVmV0ZXJhbnMgQWZmYWly

cywgV2FzaGluZ3RvbiwgRGlzdHJpY3Qgb2YgQ29sdW1iaWEuJiN4RDtEZXBhcnRtZW50IG9mIFJh

ZGlvbG9neSwgTW91bnQgU2luYWkgU2Nob29sIG9mIE1lZGljaW5lLCBOZXcgWW9yaywgTmV3IFlv

cmsuJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBNaWNoaWdhbiBI

b3NwaXRhbHMsIEFubiBBcmJvciwgTWljaGlnYW4uJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgRGF2aWQgR2VmZmVuIFNjaG9vbCBvZiBNZWRpY2luZSBhdCBVQ0xBLCBMb3MgQW5nZWxlcywg

Q2FsaWZvcm5pYS4mI3hEO0VsdWNpZCBCaW9pbWFnaW5nIEluYywgV2VuaGFtLCBNYXNzYWNodXNl

dHRzLiYjeEQ7RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFt

LCBOb3J0aCBDYXJvbGluYS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Sb2xlIG9mIHRo

ZSBRdWFudGl0YXRpdmUgSW1hZ2luZyBCaW9tYXJrZXIgQWxsaWFuY2UgaW4gb3B0aW1pemluZyBD

VCBmb3IgdGhlIGV2YWx1YXRpb24gb2YgbHVuZyBjYW5jZXIgc2NyZWVuLWRldGVjdGVkIG5vZHVs

ZXM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+SiBBbSBDb2xsIFJhZGlvbDwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+Sm91cm5hbCBvZiB0aGUgQW1lcmljYW4gQ29sbGVnZSBvZiBSYWRpb2xv

Z3kgOiBKQUNSPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBB

bSBDb2xsIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkpvdXJuYWwgb2YgdGhlIEFtZXJpY2Fu

IENvbGxlZ2Ugb2YgUmFkaW9sb2d5IDogSkFDUjwvYWJici0xPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBBbSBDb2xsIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0x

PkpvdXJuYWwgb2YgdGhlIEFtZXJpY2FuIENvbGxlZ2Ugb2YgUmFkaW9sb2d5IDogSkFDUjwvYWJi

ci0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjM5MC01PC9wYWdlcz48dm9sdW1lPjEyPC92b2x1

bWU+PG51bWJlcj40PC9udW1iZXI+PGRhdGVzPjx5ZWFyPjIwMTU8L3llYXI+PHB1Yi1kYXRlcz48

ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTU4LTM0OVggKEVsZWN0

cm9uaWMpJiN4RDsxNTQ2LTE0NDAgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI1ODQy

MDE3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5j

YmkubmxtLm5paC5nb3YvcHVibWVkLzI1ODQyMDE3PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxz

PjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouamFjci4yMDE0LjEyLjAwMzwvZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5ZYW5rZWxldml0ejwvQXV0aG9yPjxZZWFyPjIwMDA8L1ll

YXI+PFJlY051bT4yMTM3PC9SZWNOdW0+PERpc3BsYXlUZXh0PigzLTkpPC9EaXNwbGF5VGV4dD48

cmVjb3JkPjxyZWMtbnVtYmVyPjIxMzc8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFw

cD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVz

dGFtcD0iMTQzOTIzMjEzMyI+MjEzNzwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1l

PSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxh

dXRob3I+WWFua2VsZXZpdHosIEQuIEYuPC9hdXRob3I+PGF1dGhvcj5SZWV2ZXMsIEEuIFAuPC9h

dXRob3I+PGF1dGhvcj5Lb3N0aXMsIFcuIEouPC9hdXRob3I+PGF1dGhvcj5aaGFvLCBCLjwvYXV0

aG9yPjxhdXRob3I+SGVuc2Noa2UsIEMuIEkuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0

b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE5ldyBZb3JrIFByZXNi

eXRlcmlhbiBIb3NwaXRhbC1XZWlsbCBDb3JuZWxsIE1lZGljYWwgQ2VudGVyLCBCdWlsZGluZyBT

dGFyci04QTIzLCA1MjUgRSA2OHRoIFN0LCBOZXcgWW9yaywgTlkgMTAwMjEsIFVTQS4gZHlhbmtl

bGVAbWFpbC5tZWQuY29ybmVsbC5lZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5TbWFs

bCBwdWxtb25hcnkgbm9kdWxlczogdm9sdW1ldHJpY2FsbHkgZGV0ZXJtaW5lZCBncm93dGggcmF0

ZXMgYmFzZWQgb24gQ1QgZXZhbHVhdGlvbjwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xv

Z3k8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0

bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3Blcmlv

ZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48

L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4yNTEtNjwvcGFnZXM+PHZvbHVtZT4yMTc8L3ZvbHVtZT48

bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWdlZDwva2V5d29yZD48a2V5d29y

ZD5EaWFnbm9zaXMsIERpZmZlcmVudGlhbDwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdv

cmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkltYWdlIFByb2Nlc3NpbmcsIENv

bXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL3BhdGhvbG9n

eS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1p

ZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnBhdGhvbG9neS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwv

a2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDA8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3Q8L2Rh

dGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4wMDMzLTg0MTkgKFByaW50KSYjeEQ7MDAzMy04

NDE5IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xMTAxMjQ1MzwvYWNjZXNzaW9uLW51

bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1

Ym1lZC8xMTAxMjQ1MzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+MTAuMTE0OC9yYWRpb2xvZ3kuMjE3LjEucjAwb2MzMzI1MTwvZWxlY3Ryb25pYy1y

ZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Qm9sdGU8L0F1dGhvcj48

WWVhcj4yMDA3PC9ZZWFyPjxSZWNOdW0+MjE0NzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE0NzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIyNjUyIj4y

MTQ3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Cb2x0ZSwgSC48L2F1

dGhvcj48YXV0aG9yPkphaG5rZSwgVC48L2F1dGhvcj48YXV0aG9yPlNjaGFmZXIsIEYuIEsuPC9h

dXRob3I+PGF1dGhvcj5XZW5rZSwgUi48L2F1dGhvcj48YXV0aG9yPkhvZmZtYW5uLCBCLjwvYXV0

aG9yPjxhdXRob3I+RnJlaXRhZy1Xb2xmLCBTLjwvYXV0aG9yPjxhdXRob3I+RGlja2VuLCBWLjwv

YXV0aG9yPjxhdXRob3I+S3VobmlnaywgSi4gTS48L2F1dGhvcj48YXV0aG9yPkxvaG1hbm4sIEou

PC9hdXRob3I+PGF1dGhvcj5Wb3NzLCBTLjwvYXV0aG9yPjxhdXRob3I+S25vc3MsIE4uPC9hdXRo

b3I+PGF1dGhvcj5IZWxsZXIsIE0uPC9hdXRob3I+PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhv

cj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERp

YWdub3N0aWMgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IEhvc3BpdGFsIFNjaGxlc3dpZy1Ib2xzdGVp

biBDYW1wdXMgS2llbCwgQXJub2xkLUhlbGxlciBTdHJhc3NlIDksIDI0MTA1IEtpZWwsIEdlcm1h

bnkuIGhlbmRyaWtib2x0ZUByYWQudW5pLWtpZWwuZGU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0

aXRsZT5JbnRlcm9ic2VydmVyLXZhcmlhYmlsaXR5IG9mIGx1bmcgbm9kdWxlIHZvbHVtZXRyeSBj

b25zaWRlcmluZyBkaWZmZXJlbnQgc2VnbWVudGF0aW9uIGFsZ29yaXRobXMgYW5kIG9ic2VydmVy

IHRyYWluaW5nIGxldmVsczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5FdXIgSiBSYWRpb2w8L3Nl

Y29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9h

bHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyb3Bl

YW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFn

ZXM+Mjg1LTk1PC9wYWdlcz48dm9sdW1lPjY0PC92b2x1bWU+PG51bWJlcj4yPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPipBbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkFuaW1hbHM8L2tl

eXdvcmQ+PGtleXdvcmQ+Q2FsaWJyYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+RGlzZWFzZSBNb2Rl

bHMsIEFuaW1hbDwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5MdW5nIERpc2Vhc2VzLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBW

YXJpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9sb2d5LyplZHVjYXRpb248L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9sb2d5IEluZm9ybWF0aW9uIFN5c3RlbXM8L2tleXdvcmQ+PGtleXdvcmQ+

U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dy

YXBoeSwgU3BpcmFsIENvbXB1dGVkL21ldGhvZHMvKnN0YXRpc3RpY3MgJmFtcDsgbnVtZXJpY2Fs

IGRhdGE8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRh

dGVzPjxkYXRlPk5vdjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjA3MjAtMDQ4WCAo

UHJpbnQpJiN4RDswNzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3NDMz

NTk1PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5j

YmkubmxtLm5paC5nb3YvcHVibWVkLzE3NDMzNTk1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxz

PjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAwNy4wMi4wMzE8L2Vs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdpZXJh

ZGE8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MTc5MzwvUmVjTnVtPjxyZWNvcmQ+

PHJlYy1udW1iZXI+MTc5MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIg

ZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIw

Ij4xNzkzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5HaWVyYWRhLCBE

LiBTLjwvYXV0aG9yPjxhdXRob3I+UGlsZ3JhbSwgVC4gSy48L2F1dGhvcj48YXV0aG9yPkZvcmQs

IE0uPC9hdXRob3I+PGF1dGhvcj5GYWdlcnN0cm9tLCBSLiBNLjwvYXV0aG9yPjxhdXRob3I+Q2h1

cmNoLCBULiBSLjwvYXV0aG9yPjxhdXRob3I+TmF0aCwgSC48L2F1dGhvcj48YXV0aG9yPkdhcmcs

IEsuPC9hdXRob3I+PGF1dGhvcj5TdHJvbGxvLCBELiBDLjwvYXV0aG9yPjwvYXV0aG9ycz48L2Nv

bnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9s

b2d5LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5n

c2hpZ2h3YXkgQmx2ZCwgU3QuIExvdWlzLCBNTyA2MzEwNSwgVVNBLiBnaWVyYWRhZEB3dXN0bC5l

ZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5MdW5nIGNhbmNlcjogaW50ZXJvYnNlcnZl

ciBhZ3JlZW1lbnQgb24gaW50ZXJwcmV0YXRpb24gb2YgcHVsbW9uYXJ5IGZpbmRpbmdzIGF0IGxv

dy1kb3NlIENUIHNjcmVlbmluZzwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3Nl

Y29uZGFyeS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4yNjUtNzI8L3BhZ2VzPjx2b2x1bWU+MjQ2

PC92b2x1bWU+PG51bWJlcj4xPC9udW1iZXI+PGRhdGVzPjx5ZWFyPjIwMDg8L3llYXI+PHB1Yi1k

YXRlcz48ZGF0ZT5KYW48L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4x

ODAyNDQzNjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3

dy5uY2JpLm5sbS5uaWguZ292L2VudHJlei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9

UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9uJmFtcDtsaXN0X3VpZHM9MTgwMjQ0MzYgPC91cmw+PC9y

ZWxhdGVkLXVybHM+PC91cmxzPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPnZhbiBLbGF2

ZXJlbjwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTQwPC9SZWNOdW0+PHJlY29y

ZD48cmVjLW51bWJlcj4yMTQwPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjE0MzkyMzI0NjkiPjIxNDA8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91

cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9y

PnZhbiBLbGF2ZXJlbiwgUi4gSi48L2F1dGhvcj48YXV0aG9yPk91ZGtlcmssIE0uPC9hdXRob3I+

PGF1dGhvcj5Qcm9rb3AsIE0uPC9hdXRob3I+PGF1dGhvcj5TY2hvbHRlbiwgRS4gVC48L2F1dGhv

cj48YXV0aG9yPk5hY2thZXJ0cywgSy48L2F1dGhvcj48YXV0aG9yPlZlcm5ob3V0LCBSLjwvYXV0

aG9yPjxhdXRob3I+dmFuIEllcnNlbCwgQy4gQS48L2F1dGhvcj48YXV0aG9yPnZhbiBkZW4gQmVy

Z2gsIEsuIEEuPC9hdXRob3I+PGF1dGhvcj52YW4gJmFwb3M7dCBXZXN0ZWluZGUsIFMuPC9hdXRo

b3I+PGF1dGhvcj52YW4gZGVyIEFhbHN0LCBDLjwvYXV0aG9yPjxhdXRob3I+VGh1bm5pc3Nlbiwg

RS48L2F1dGhvcj48YXV0aG9yPlh1LCBELiBNLjwvYXV0aG9yPjxhdXRob3I+V2FuZywgWS48L2F1

dGhvcj48YXV0aG9yPlpoYW8sIFkuPC9hdXRob3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwvYXV0

aG9yPjxhdXRob3I+ZGUgSG9vcCwgQi4gSi48L2F1dGhvcj48YXV0aG9yPkdyb2VuLCBILiBKLjwv

YXV0aG9yPjxhdXRob3I+ZGUgQm9jaywgRy4gSC48L2F1dGhvcj48YXV0aG9yPnZhbiBPb2lqZW4s

IFAuPC9hdXRob3I+PGF1dGhvcj5XZWVuaW5rLCBDLjwvYXV0aG9yPjxhdXRob3I+VmVyc2NoYWtl

bGVuLCBKLjwvYXV0aG9yPjxhdXRob3I+TGFtbWVycywgSi4gVy48L2F1dGhvcj48YXV0aG9yPlRp

bWVucywgVy48L2F1dGhvcj48YXV0aG9yPldpbGxlYnJhbmQsIEQuPC9hdXRob3I+PGF1dGhvcj5W

aW5rLCBBLjwvYXV0aG9yPjxhdXRob3I+TWFsaSwgVy48L2F1dGhvcj48YXV0aG9yPmRlIEtvbmlu

ZywgSC4gSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIFB1bG1vbm9sb2d5LCBFcmFzbXVzIE1lZGljYWwgQ2VudGVyLCAzMDAwIENB

IFJvdHRlcmRhbSwgVGhlIE5ldGhlcmxhbmRzLiByLmoudmFua2xhdmVyZW5AZXJhc211c21jLm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+TWFuYWdlbWVudCBvZiBsdW5nIG5vZHVsZXMg

ZGV0ZWN0ZWQgYnkgdm9sdW1lIENUIHNjYW5uaW5nPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPk4g

RW5nbCBKIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+VGhlIE5ldyBFbmdsYW5kIGpv

dXJuYWwgb2YgbWVkaWNpbmU8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5OIEVuZ2wgSiBNZWQ8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4yMjIxLTk8

L3BhZ2VzPjx2b2x1bWU+MzYxPC92b2x1bWU+PG51bWJlcj4yMzwvbnVtYmVyPjxrZXl3b3Jkcz48

a2V5d29yZD5Gb2xsb3ctVXAgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9w

bGFzbXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+UHJvZ25vc2lzPC9rZXl3b3JkPjxrZXl3b3JkPlJpc2sgRmFjdG9yczwva2V5d29y

ZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+

U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRo

b2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5LCBYLVJheSBD

b21wdXRlZC9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlR1bW9yIEJ1cmRlbjwva2V5d29yZD48

L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RGVjIDM8

L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTMzLTQ0MDYgKEVsZWN0cm9uaWMpJiN4

RDswMDI4LTQ3OTMgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE5OTU1NTI0PC9hY2Nl

c3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5p

aC5nb3YvcHVibWVkLzE5OTU1NTI0PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJv

bmljLXJlc291cmNlLW51bT4xMC4xMDU2L05FSk1vYTA5MDYwODU8L2VsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPlNpbmdoPC9BdXRob3I+PFllYXI+

MjAxMTwvWWVhcj48UmVjTnVtPjIwMzM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIwMzM8

L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2

ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTMyNzM1Mzk4NCI+MjAzMzwv

a2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9y

ZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+U2luZ2gsIFMuPC9hdXRob3I+

PGF1dGhvcj5QaW5za3ksIFAuPC9hdXRob3I+PGF1dGhvcj5GaW5lYmVyZywgTi4gUy48L2F1dGhv

cj48YXV0aG9yPkdpZXJhZGEsIEQuIFMuPC9hdXRob3I+PGF1dGhvcj5HYXJnLCBLLjwvYXV0aG9y

PjxhdXRob3I+U3VuLCBZLjwvYXV0aG9yPjxhdXRob3I+TmF0aCwgUC4gSC48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgVW5pdmVyc2l0eSBvZiBBbGFiYW1hIEhvc3BpdGFscywgNjE5IDE5dGggU3QgU291dGgsIEJp

cm1pbmdoYW0sIEFMIDM1MjQ5LCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+RXZh

bHVhdGlvbiBvZiByZWFkZXIgdmFyaWFiaWxpdHkgaW4gdGhlIGludGVycHJldGF0aW9uIG9mIGZv

bGxvdy11cCBDVCBzY2FucyBhdCBsdW5nIGNhbmNlciBzY3JlZW5pbmc8L3RpdGxlPjxzZWNvbmRh

cnktdGl0bGU+UmFkaW9sb2d5PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8

L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1

bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xv

Z3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MjYzLTcwPC9wYWdlcz48dm9s

dW1lPjI1OTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxlZGl0aW9uPjIwMTEvMDEvMjE8L2Vk

aXRpb24+PGtleXdvcmRzPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8

L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NYXNzIFNjcmVlbmluZy8q

c3RhdGlzdGljcyAmYW1wOyBudW1lcmljYWwgZGF0YTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUg

QWdlZDwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtleXdv

cmQ+UHJldmFsZW5jZTwva2V5d29yZD48a2V5d29yZD5SZWZlcnJhbCBhbmQgQ29uc3VsdGF0aW9u

Lyp1dGlsaXphdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0

czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKnN0YXRpc3RpY3MgJmFtcDsgbnVt

ZXJpY2FsIGRhdGE8L2tleXdvcmQ+PGtleXdvcmQ+VW5pdGVkIFN0YXRlcy9lcGlkZW1pb2xvZ3k8

L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMTwveWVhcj48cHViLWRhdGVzPjxk

YXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1MjctMTMxNSAoRWxlY3Ry

b25pYykmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjEyNDgy

MzI8L2FjY2Vzc2lvbi1udW0+PHdvcmstdHlwZT5SYW5kb21pemVkIENvbnRyb2xsZWQgVHJpYWwm

I3hEO1Jlc2VhcmNoIFN1cHBvcnQsIE4uSS5ILiwgRXh0cmFtdXJhbDwvd29yay10eXBlPjx1cmxz

PjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIx

MjQ4MjMyPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxjdXN0b20yPjMwNjQ4MTk8L2N1c3Rv

bTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjEwMTAxMjU0PC9lbGVj

dHJvbmljLXJlc291cmNlLW51bT48bGFuZ3VhZ2U+ZW5nPC9sYW5ndWFnZT48L3JlY29yZD48L0Np

dGU+PENpdGU+PEF1dGhvcj5QZXRyaWNrPC9BdXRob3I+PFllYXI+MjAxNDwvWWVhcj48UmVjTnVt

PjIxNDY8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDY8L3JlYy1udW1iZXI+PGZvcmVp

Z24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYw

c2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyMjI0NyI+MjE0Njwva2V5PjwvZm9yZWlnbi1rZXlz

PjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0

b3JzPjxhdXRob3JzPjxhdXRob3I+UGV0cmljaywgTi48L2F1dGhvcj48YXV0aG9yPktpbSwgSC4g

Si48L2F1dGhvcj48YXV0aG9yPkNsdW5pZSwgRC48L2F1dGhvcj48YXV0aG9yPkJvcnJhZGFpbGUs

IEsuPC9hdXRob3I+PGF1dGhvcj5Gb3JkLCBSLjwvYXV0aG9yPjxhdXRob3I+WmVuZywgUi48L2F1

dGhvcj48YXV0aG9yPkdhdnJpZWxpZGVzLCBNLiBBLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdy

YXksIE0uIEYuPC9hdXRob3I+PGF1dGhvcj5MdSwgWi4gUS48L2F1dGhvcj48YXV0aG9yPkZlbmlt

b3JlLCBDLjwvYXV0aG9yPjxhdXRob3I+WmhhbywgQi48L2F1dGhvcj48YXV0aG9yPkJ1Y2tsZXIs

IEEuIEouPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+Q2Vu

dGVyIGZvciBEZXZpY2VzIGFuZCBSYWRpb2xvZ2ljYWwgSGVhbHRoLCBVLlMuIEZvb2QgYW5kIERy

dWcgQWRtaW5pc3RyYXRpb24sIFdPNjItNDExOCwgMTA5MDMgTmV3IEhhbXBzaGlyZSBBdmVudWUs

IFNpbHZlciBTcHJpbmcsIE1EIDIwOTkzLTAwMDIuIEVsZWN0cm9uaWMgYWRkcmVzczogbmljaG9s

YXMucGV0cmlja0BmZGEuaGhzLmdvdi4mI3hEO0RlcGFydG1lbnQgb2YgUmFkaW9sb2dpY2FsIFNj

aWVuY2VzLCBEYXZpZCBHZWZmZW4gU2Nob29sIG9mIE1lZGljaW5lIGF0IFVuaXZlcnNpdHkgb2Yg

Q2FsaWZvcm5pYSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMsIENhbGlmb3JuaWE7IERlcGFydG1l

bnQgb2YgQmlvc3RhdGlzdGljcywgRmllbGRpbmcgU2Nob29sIG9mIGEgUHVibGljIEhlYWx0aCBh

dCBVbml2ZXJzaXR5IG9mIENhbGlmb3JuaWEgTG9zIEFuZ2VsZXMsIExvcyBBbmdlbGVzLCBDYWxp

Zm9ybmlhLiYjeEQ7Q29yZUxhYiBQYXJ0bmVycywgSW5jLiwgUHJpbmNldG9uLCBOSi4mI3hEO0Ns

aW5pY2FsIFRyaWFscyBJbWFnaW5nIENvbnN1bHRpbmcsIExMQy4sIEJlbGxlIE1lYWQsIE5ldyBK

ZXJzZXkuJiN4RDtDZW50ZXIgZm9yIERldmljZXMgYW5kIFJhZGlvbG9naWNhbCBIZWFsdGgsIFUu

Uy4gRm9vZCBhbmQgRHJ1ZyBBZG1pbmlzdHJhdGlvbiwgV082Mi00MTE4LCAxMDkwMyBOZXcgSGFt

cHNoaXJlIEF2ZW51ZSwgU2lsdmVyIFNwcmluZywgTUQgMjA5OTMtMDAwMi4mI3hEO0RlcGFydG1l

bnQgb2YgUmFkaW9sb2dpY2FsIFNjaWVuY2VzLCBEYXZpZCBHZWZmZW4gU2Nob29sIG9mIE1lZGlj

aW5lIGF0IFVuaXZlcnNpdHkgb2YgQ2FsaWZvcm5pYSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMs

IENhbGlmb3JuaWEuJiN4RDtOYXRpb25hbCBJbnN0aXR1dGUgb2YgU3RhbmRhcmRzIGFuZCBUZWNo

bm9sb2d5LCBHYWl0aGVyc2J1cmcsIE1ELiYjeEQ7RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIENv

bHVtYmlhIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIE5ldyBZb3JrLCBOZXcgWW9yay4mI3hE

O0VsdWNpZCBCaW9pbWFnaW5nIEluYy4sIFdlbmhhbSwgTUEuPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q29tcGFyaXNvbiBvZiAxRCwgMkQsIGFuZCAzRCBub2R1bGUgc2l6aW5nIG1ldGhv

ZHMgYnkgcmFkaW9sb2dpc3RzIGZvciBzcGhlcmljYWwgYW5kIGNvbXBsZXggbm9kdWxlcyBvbiB0

aG9yYWNpYyBDVCBwaGFudG9tIGltYWdlczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5BY2FkIFJh

ZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWNhZGVtaWMgcmFkaW9sb2d5PC9hbHQt

dGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QWNhZCBSYWRpb2w8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkZW1pYyBS

YWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MzAtNDA8L3BhZ2Vz

Pjx2b2x1bWU+MjE8L3ZvbHVtZT48bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+

RXF1aXBtZW50IERlc2lnbjwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdv

cmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+

T2JzZXJ2ZXIgVmFyaWF0aW9uPC9rZXl3b3JkPjxrZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwv

a2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1

dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGh5LCBUaG9y

YWNpYy9pbnN0cnVtZW50YXRpb24vKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNp

YmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNp

ZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlv

Z3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL2luc3Ry

dW1lbnRhdGlvbi8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDE0

PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SmFuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlz

Ym4+MTg3OC00MDQ2IChFbGVjdHJvbmljKSYjeEQ7MTA3Ni02MzMyIChMaW5raW5nKTwvaXNibj48

YWNjZXNzaW9uLW51bT4yNDMzMTI2MjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMzMTI2MjwvdXJsPjwv

cmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAxNi9qLmFj

cmEuMjAxMy4wOS4wMjA8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48

Q2l0ZT48QXV0aG9yPk11bHNoaW5lPC9BdXRob3I+PFllYXI+MjAxNTwvWWVhcj48UmVjTnVtPjIx

Mzk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxMzk8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMTQzOTIzMjIzMiI+MjEzOTwva2V5PjwvZm9yZWlnbi1rZXlzPjxy

ZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3Jz

PjxhdXRob3JzPjxhdXRob3I+TXVsc2hpbmUsIEouIEwuPC9hdXRob3I+PGF1dGhvcj5HaWVyYWRh

LCBELiBTLjwvYXV0aG9yPjxhdXRob3I+QXJtYXRvLCBTLiBHLiwgM3JkPC9hdXRob3I+PGF1dGhv

cj5BdmlsYSwgUi4gUy48L2F1dGhvcj48YXV0aG9yPllhbmtlbGV2aXR6LCBELiBGLjwvYXV0aG9y

PjxhdXRob3I+S2F6ZXJvb25pLCBFLiBBLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdyYXksIE0u

IEYuPC9hdXRob3I+PGF1dGhvcj5CdWNrbGVyLCBBLiBKLjwvYXV0aG9yPjxhdXRob3I+U3VsbGl2

YW4sIEQuIEMuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

UnVzaCBVbml2ZXJzaXR5LCBDaGljYWdvLCBJbGxpbm9pcy4gRWxlY3Ryb25pYyBhZGRyZXNzOiBq

bXVsc2hpbkBydXNoLmVkdS4mI3hEO01hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5

LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCBTdCBMb3VpcywgTWlz

c291cmkuJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBDaGljYWdv

LCBDaGljYWdvLCBJbGxpbm9pcy4mI3hEO1VTIERlcGFydG1lbnQgb2YgVmV0ZXJhbnMgQWZmYWly

cywgV2FzaGluZ3RvbiwgRGlzdHJpY3Qgb2YgQ29sdW1iaWEuJiN4RDtEZXBhcnRtZW50IG9mIFJh

ZGlvbG9neSwgTW91bnQgU2luYWkgU2Nob29sIG9mIE1lZGljaW5lLCBOZXcgWW9yaywgTmV3IFlv

cmsuJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBNaWNoaWdhbiBI

b3NwaXRhbHMsIEFubiBBcmJvciwgTWljaGlnYW4uJiN4RDtEZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgRGF2aWQgR2VmZmVuIFNjaG9vbCBvZiBNZWRpY2luZSBhdCBVQ0xBLCBMb3MgQW5nZWxlcywg

Q2FsaWZvcm5pYS4mI3hEO0VsdWNpZCBCaW9pbWFnaW5nIEluYywgV2VuaGFtLCBNYXNzYWNodXNl

dHRzLiYjeEQ7RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFt

LCBOb3J0aCBDYXJvbGluYS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Sb2xlIG9mIHRo

ZSBRdWFudGl0YXRpdmUgSW1hZ2luZyBCaW9tYXJrZXIgQWxsaWFuY2UgaW4gb3B0aW1pemluZyBD

VCBmb3IgdGhlIGV2YWx1YXRpb24gb2YgbHVuZyBjYW5jZXIgc2NyZWVuLWRldGVjdGVkIG5vZHVs

ZXM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+SiBBbSBDb2xsIFJhZGlvbDwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+Sm91cm5hbCBvZiB0aGUgQW1lcmljYW4gQ29sbGVnZSBvZiBSYWRpb2xv

Z3kgOiBKQUNSPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBB

bSBDb2xsIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkpvdXJuYWwgb2YgdGhlIEFtZXJpY2Fu

IENvbGxlZ2Ugb2YgUmFkaW9sb2d5IDogSkFDUjwvYWJici0xPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBBbSBDb2xsIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0x

PkpvdXJuYWwgb2YgdGhlIEFtZXJpY2FuIENvbGxlZ2Ugb2YgUmFkaW9sb2d5IDogSkFDUjwvYWJi

ci0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjM5MC01PC9wYWdlcz48dm9sdW1lPjEyPC92b2x1

bWU+PG51bWJlcj40PC9udW1iZXI+PGRhdGVzPjx5ZWFyPjIwMTU8L3llYXI+PHB1Yi1kYXRlcz48

ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTU4LTM0OVggKEVsZWN0

cm9uaWMpJiN4RDsxNTQ2LTE0NDAgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI1ODQy

MDE3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5j

YmkubmxtLm5paC5nb3YvcHVibWVkLzI1ODQyMDE3PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxz

PjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouamFjci4yMDE0LjEyLjAwMzwvZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE.DATA (3-9), and many studies have explored the accuracy in phantoms PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5EYXM8L0F1dGhvcj48WWVhcj4yMDA3PC9ZZWFyPjxSZWNO

dW0+MjE0ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTAtMTgpPC9EaXNwbGF5VGV4dD48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNDg8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTIyMzY2MSI+MjE0ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

RGFzLCBNLjwvYXV0aG9yPjxhdXRob3I+TXVobGVuYnJ1Y2gsIEcuPC9hdXRob3I+PGF1dGhvcj5L

YXRvaCwgTS48L2F1dGhvcj48YXV0aG9yPkJha2FpLCBBLjwvYXV0aG9yPjxhdXRob3I+U2FsZ2Fu

aWNvZmYsIE0uPC9hdXRob3I+PGF1dGhvcj5TdGFuemVsLCBTLjwvYXV0aG9yPjxhdXRob3I+TWFo

bmtlbiwgQS4gSC48L2F1dGhvcj48YXV0aG9yPkd1bnRoZXIsIFIuIFcuPC9hdXRob3I+PGF1dGhv

cj5XaWxkYmVyZ2VyLCBKLiBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0

aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgRGlhZ25vc3RpYyBSYWRpb2xvZ3ksIFJXVEggQWFjaGVu

IFVuaXZlcnNpdHksIEFhY2hlbiwgR2VybWFueS4gZGFzQHJhZC5yd3RoLWFhY2hlbi5kZTwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2Ygc29saWQgcHVs

bW9uYXJ5IG5vZHVsZXMgaW4gYSBwaGFudG9tOiBhY2N1cmFjeSBhY3Jvc3MgZGlmZmVyZW50IENU

IHNjYW5uZXIgdGVjaG5vbG9naWVzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkludmVzdCBSYWRp

b2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkludmVzdGlnYXRpdmUgcmFkaW9sb2d5PC9h

bHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SW52ZXN0IFJhZGlvbDwv

ZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkludmVz

dGlnYXRpdmUgUmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5

Ny0zMDI8L3BhZ2VzPjx2b2x1bWU+NDI8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48a2V5d29y

ZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPlBhdHRlcm4gUmVjb2duaXRpb24s

IEF1dG9tYXRlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8

L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21w

dXRlci1Bc3Npc3RlZC9pbnN0cnVtZW50YXRpb24vbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

ZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD4qVG9tb2dyYXBoeSBT

Y2FubmVycywgWC1SYXkgQ29tcHV0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgU3Bp

cmFsIENvbXB1dGVkL2luc3RydW1lbnRhdGlvbi8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC9pbnN0cnVtZW50YXRpb248L2tleXdvcmQ+PC9rZXl3

b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48

L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjAwMjAtOTk5NiAoUHJpbnQpJiN4RDswMDIwLTk5OTYg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3NDE0NTI1PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3NDE0NTI1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMDk3LzAxLnJsaS4wMDAwMjU4NjgzLjIwMTIzLmM0PC9lbGVjdHJvbmljLXJlc291

cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFll

YXI+MjAwODwvWWVhcj48UmVjTnVtPjE4OTk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4

OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6

YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5Pjwv

Zm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlw

ZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48

YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRob3I+PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9y

PjxhdXRob3I+TWlsbGVyLCBKLiBWLjwvYXV0aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0

aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBHLiBBLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1

dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZl

cnNpdHkgb2YgU291dGggQ2Fyb2xpbmEsIDE2OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBD

aGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiByYXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNz

Pjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBub2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29u

c3RydWN0aW9uIHBhcmFtZXRlcnMgb24gYXV0b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9t

IHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxl

PjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48

L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04PC9wYWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1i

ZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

TGluZWFyIE1vZGVsczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3Jk

PjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3Jh

cGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtl

eXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJkczwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypwYXRob2xvZ3kvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9t

b2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0

ZXM+PHllYXI+MjAwODwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRl

cz48L2RhdGVzPjxhY2Nlc3Npb24tbnVtPjE4NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxy

ZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5

LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtkYj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xp

c3RfdWlkcz0xODQzMDg3NCA8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9D

aXRlPjxDaXRlPjxBdXRob3I+R29vPC9BdXRob3I+PFllYXI+MjAwNTwvWWVhcj48UmVjTnVtPjE4

OTg8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTg8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+R29vLCBKLiBNLjwvYXV0aG9yPjxhdXRob3I+VG9uZ2RlZSwgVC48L2F1dGhvcj48

YXV0aG9yPlRvbmdkZWUsIFIuPC9hdXRob3I+PGF1dGhvcj5ZZW8sIEsuPC9hdXRob3I+PGF1dGhv

cj5IaWxkZWJvbHQsIEMuIEYuPC9hdXRob3I+PGF1dGhvcj5CYWUsIEsuIFQuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWFsbGluY2tyb2R0IEluc3RpdHV0

ZSBvZiBSYWRpb2xvZ3ksIFdhc2hpbmd0b24gVW5pdmVyc2l0eSBTY2hvb2wgb2YgTWVkaWNpbmUs

IDUxMCBTIEtpbmdzaGlnaHdheSBCbHZkLCBTdCBMb3VpcywgTU8gNjMxMTAsIFVTQS48L2F1dGgt

YWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50IG9mIHN5bnRoZXRp

YyBsdW5nIG5vZHVsZXMgd2l0aCBtdWx0aS1kZXRlY3RvciByb3cgQ1Q6IGVmZmVjdCBvZiB2YXJp

b3VzIGltYWdlIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgYW5kIHNlZ21lbnRhdGlvbiB0aHJl

c2hvbGRzIG9uIG1lYXN1cmVtZW50IGFjY3VyYWN5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJh

ZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxl

PlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjg1MC02PC9wYWdlcz48

dm9sdW1lPjIzNTwvdm9sdW1lPjxudW1iZXI+MzwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5B

Y3J5bGljIFJlc2luczwva2V5d29yZD48a2V5d29yZD4qSW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5

d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDU8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5KdW48L2RhdGU+

PC9wdWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4xNTkxNDQ3ODwvYWNjZXNzaW9uLW51

bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2Vu

dHJlei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0

aW9uJmFtcDtsaXN0X3VpZHM9MTU5MTQ0NzggPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFy

PjxSZWNOdW0+MjE0OTwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE0OTwvcmVjLW51bWJl

cj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFw

dnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIzOTM3Ij4yMTQ5PC9rZXk+PC9mb3Jl

aWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxj

b250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFy

bmhhcnQsIEguPC9hdXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwvYXV0aG9yPjxhdXRob3I+Q29s

c2hlciwgSi48L2F1dGhvcj48YXV0aG9yPkFtdXJhbywgTS48L2F1dGhvcj48YXV0aG9yPlNhbWVp

LCBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1lZGlj

YWwgUGh5c2ljcyBHcmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZlcnNpdHksIER1cmhhbSwgTkMg

Mjc3MDUsIFVTQS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5RdWFudGl0YXRpdmUgQ1Q6

IHRlY2huaXF1ZSBkZXBlbmRlbmNlIG9mIHZvbHVtZSBlc3RpbWF0aW9uIG9uIHB1bG1vbmFyeSBu

b2R1bGVzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlBoeXMgTWVkIEJpb2w8L3NlY29uZGFyeS10

aXRsZT48YWx0LXRpdGxlPlBoeXNpY3MgaW4gbWVkaWNpbmUgYW5kIGJpb2xvZ3k8L2FsdC10aXRs

ZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5QaHlzIE1lZCBCaW9sPC9mdWxsLXRp

dGxlPjxhYmJyLTE+UGh5c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWJici0xPjwvcGVy

aW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UGh5cyBNZWQgQmlvbDwvZnVsbC10

aXRsZT48YWJici0xPlBoeXNpY3MgaW4gbWVkaWNpbmUgYW5kIGJpb2xvZ3k8L2FiYnItMT48L2Fs

dC1wZXJpb2RpY2FsPjxwYWdlcz4xMzM1LTQ4PC9wYWdlcz48dm9sdW1lPjU3PC92b2x1bWU+PG51

bWJlcj41PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFudGhyb3BvbWV0cnk8L2tleXdvcmQ+

PGtleXdvcmQ+RXF1aXBtZW50IERlc2lnbjwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tleXdvcmQ+PGtleXdvcmQ+

THVuZy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9kaWFnbm9z

aXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TW9kZWxzLCBTdGF0aXN0aWNhbDwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5Qb2x5cHJv

cHlsZW5lcy9jaGVtaXN0cnk8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJl

c3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRh

cnkgUHVsbW9uYXJ5IE5vZHVsZS9kaWFnbm9zaXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3

b3JkPlRob3JheC9wYXRob2xvZ3k8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkg

Q29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMjwv

eWVhcj48cHViLWRhdGVzPjxkYXRlPk1hciA3PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlz

Ym4+MTM2MS02NTYwIChFbGVjdHJvbmljKSYjeEQ7MDAzMS05MTU1IChMaW5raW5nKTwvaXNibj48

YWNjZXNzaW9uLW51bT4yMjM0OTI2NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMjM0OTI2NTwvdXJsPjwv

cmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA4OC8wMDMx

LTkxNTUvNTcvNS8xMzM1PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MjE1

MDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1r

ZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNm

YWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJl

Zi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+

PGF1dGhvcnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0u

IEwuPC9hdXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwv

YXV0aG9yPjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1

dGhvcj48YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlv

bG9naWNoZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmlj

byBBLiBHZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5

IG5vZHVsZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVz

cywgcmVjb25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5

IHJlc3VsdHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48

cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEg

UmFkaW9sb2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1l

ZGljYTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1l

PjExMzwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8

L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFs

ZTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5Q

bGV1cmEvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVu

aGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtl

eXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdv

cmRzPjxkYXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwv

cHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAo

TGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVy

bHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQv

MTgzMzgxMjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2Ut

bnVtPjEwLjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPlhpZTwvQXV0aG9yPjxZZWFyPjIwMTQ8L1llYXI+

PFJlY051bT4yMTUxPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUxPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQxMzUiPjIxNTE8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPlhpZSwgWC48L2F1dGhvcj48YXV0aG9yPldpbGxl

bWluaywgTS4gSi48L2F1dGhvcj48YXV0aG9yPmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PGF1dGhv

cj52YW4gT29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48

YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhvcj48YXV0aG9yPkdyZXV0ZXIsIE0uIEouPC9h

dXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+MSBEZXBhcnRtZW50

IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNh

bCBDZW50ZXIgR3JvbmluZ2VuLCBQTyBCb3ggMzAuMDAxLCBHcm9uaW5nZW4gOTcwMCBSQiwgVGhl

IE5ldGhlcmxhbmRzLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlNtYWxsIGlycmVndWxh

ciBwdWxtb25hcnkgbm9kdWxlcyBpbiBsb3ctZG9zZSBDVDogb2JzZXJ2ZXIgZGV0ZWN0aW9uIHNl

bnNpdGl2aXR5IGFuZCB2b2x1bWV0cnkgYWNjdXJhY3k8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+

QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVy

aWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9k

aWNhbD48cGFnZXM+VzIwMi05PC9wYWdlcz48dm9sdW1lPjIwMjwvdm9sdW1lPjxudW1iZXI+Mzwv

bnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2lu

ZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9w

bGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk9ic2VydmVyIFZhcmlhdGlvbjwv

a2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJh

ZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaWF0aW9uIFByb3RlY3Rpb24vbWV0

aG9kczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29y

ZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKmluc3RydW1lbnRhdGlvbi8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5UdW1vciBCdXJkZW48L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHll

YXI+MjAxNDwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1hcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2Rh

dGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8

L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjQ1NTU2MTU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0

ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjQ1NTU2MTU8

L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIy

MTQvQUpSLjEzLjEwODMwPC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5XaWxsZW1pbms8L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFyPjxSZWNOdW0+

MjE1MjwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MjwvcmVjLW51bWJlcj48Zm9yZWln

bi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBz

ZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0Mzk4Ij4yMTUyPC9rZXk+PC9mb3JlaWduLWtleXM+

PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRv

cnM+PGF1dGhvcnM+PGF1dGhvcj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5MZWlu

ZXIsIFQuPC9hdXRob3I+PGF1dGhvcj5CdWRkZSwgUi4gUC48L2F1dGhvcj48YXV0aG9yPmRlIEtv

cnQsIEYuIFAuPC9hdXRob3I+PGF1dGhvcj5WbGllZ2VudGhhcnQsIFIuPC9hdXRob3I+PGF1dGhv

cj52YW4gT29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48

YXV0aG9yPmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxh

dXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFV0cmVjaHQgVW5pdmVyc2l0eSBN

ZWRpY2FsIENlbnRlciwgSFAgRTAxLjEzMiwgSGVpZGVsYmVyZ2xhYW4gMTAwLCAzNTg0IENYIFV0

cmVjaHQsIFRoZSBOZXRoZXJsYW5kcy4gbS53aWxsZW1pbmtAdW1jdXRyZWNodC5ubDwvYXV0aC1h

ZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlN5c3RlbWF0aWMgZXJyb3IgaW4gbHVuZyBub2R1bGUgdm9s

dW1ldHJ5OiBlZmZlY3Qgb2YgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIHZlcnN1cyBmaWx0ZXJl

ZCBiYWNrIHByb2plY3Rpb24gYXQgZGlmZmVyZW50IENUIHBhcmFtZXRlcnM8L3RpdGxlPjxzZWNv

bmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3Rp

dGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRp

dGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTI0MS02PC9wYWdlcz48dm9sdW1lPjE5OTwvdm9sdW1l

PjxudW1iZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9n

cmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3Jk

PjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBE

b3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9u

LCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBo

eSwgVGhvcmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9r

ZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMjwveWVhcj48cHViLWRhdGVzPjxkYXRlPkRlYzwvZGF0

ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAz

NjEtODAzWCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjMxNjk3MTQ8L2FjY2Vzc2lv

bi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdv

di9wdWJtZWQvMjMxNjk3MTQ8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMt

cmVzb3VyY2UtbnVtPjEwLjIyMTQvQUpSLjEyLjg3Mjc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpZWxwdXR6PC9BdXRob3I+PFllYXI+MjAx

MzwvWWVhcj48UmVjTnVtPjIxNTM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTM8L3Jl

Yy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZh

a2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNDQ1NCI+MjE1Mzwva2V5

PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYt

dHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+V2llbHB1dHosIE0uIE8uPC9hdXRo

b3I+PGF1dGhvcj5MZWRlcmxpbiwgTS48L2F1dGhvcj48YXV0aG9yPldyb2JsZXdza2ksIEouPC9h

dXRob3I+PGF1dGhvcj5EaW5rZWwsIEouPC9hdXRob3I+PGF1dGhvcj5FaWNoaW5nZXIsIE0uPC9h

dXRob3I+PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhvcj48YXV0aG9yPkthdWN6b3IsIEguIFUu

PC9hdXRob3I+PGF1dGhvcj5QdWRlcmJhY2gsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9zdGljIGFuZCBJbnRlcnZl

bnRpb25hbCBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgb2YgSGVpZGVsYmVyZywgSW0g

TmV1ZW5oZWltZXIgRmVsZCAxMTAsIDY5MTIwIEhlaWRlbGJlcmcsIEdlcm1hbnkuIE1hcmsud2ll

bHB1ZXR6QG1lZC51bmktaGVpZGVsYmVyZy5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxl

PkNUIHZvbHVtZXRyeSBvZiBhcnRpZmljaWFsIHB1bG1vbmFyeSBub2R1bGVzIHVzaW5nIGFuIGV4

IHZpdm8gbHVuZyBwaGFudG9tOiBpbmZsdWVuY2Ugb2YgZXhwb3N1cmUgcGFyYW1ldGVycyBhbmQg

aXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIG9uIHJlcHJvZHVjaWJpbGl0eTwvdGl0bGU+PHNlY29u

ZGFyeS10aXRsZT5FdXIgSiBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9w

ZWFuIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+

PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyb3BlYW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU3Ny04MzwvcGFnZXM+PHZvbHVtZT44Mjwv

dm9sdW1lPjxudW1iZXI+OTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD4qQWxnb3JpdGhtczwv

a2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUt

RGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5n

PC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGhpYyBJbWFnZSBFbmhhbmNlbWVudC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

YWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRo

b2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3Jk

PjxrZXl3b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5T

b2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3

b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5T

ZXA8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODcyLTc3MjcgKEVsZWN0cm9uaWMp

JiN4RDswNzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNzI3Mzc2PC9h

Y2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxt

Lm5paC5nb3YvcHVibWVkLzIzNzI3Mzc2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVj

dHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAxMy4wNC4wMzU8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhv

cj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1i

ZXI+MjE1NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2

eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NTIz

Ij4yMTU0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwv

YXV0aG9yPjxhdXRob3I+QmFybmhhcnQsIEguPC9hdXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwv

YXV0aG9yPjxhdXRob3I+Um9iaW5zLCBNLjwvYXV0aG9yPjxhdXRob3I+Q29sc2hlciwgSi48L2F1

dGhvcj48YXV0aG9yPlNhbWVpLCBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48

YXV0aC1hZGRyZXNzPk1lZGljYWwgUGh5c2ljcyBHcmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZl

cnNpdHksIER1cmhhbSwgTm9ydGggQ2Fyb2xpbmEgMjc3MDUgYW5kIENhcmwgRS4gUmF2aW4gQWR2

YW5jZWQgSW1hZ2luZyBMYWJvcmF0b3JpZXMsIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOb3J0

aCBDYXJvbGluYSAyNzcwNS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmlj

IHF1YW50aWZpY2F0aW9uIG9mIGx1bmcgbm9kdWxlcyBpbiBDVCB3aXRoIGl0ZXJhdGl2ZSByZWNv

bnN0cnVjdGlvbiAoQVNpUiBhbmQgTUJJUik8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+TWVkIFBo

eXM8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPk1lZGljYWwgcGh5c2ljczwvYWx0LXRpdGxl

PjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPk1lZCBQaHlzPC9mdWxsLXRpdGxlPjwv

cGVyaW9kaWNhbD48cGFnZXM+MTExOTAyPC9wYWdlcz48dm9sdW1lPjQwPC92b2x1bWU+PG51bWJl

cj4xMTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkFudGhyb3BvbWV0cnkvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3Bs

YXNtcy8qcmFkaW9ncmFwaHkvKnJhZGlvdGhlcmFweTwva2V5d29yZD48a2V5d29yZD5NdWx0aXBs

ZSBQdWxtb25hcnkgTm9kdWxlcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QaGFudG9t

cywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9tZXRyeS9tZXRob2RzPC9rZXl3b3Jk

PjxrZXl3b3JkPlJhZGlvdGhlcmFweSBQbGFubmluZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+

PGtleXdvcmQ+U2NhdHRlcmluZywgUmFkaWF0aW9uPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJl

PC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48

L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9k

YXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDA5NC0yNDA1IChQcmludCkmI3hEOzAwOTQt

MjQwNSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjQzMjA0MzU8L2FjY2Vzc2lvbi1u

dW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9w

dWJtZWQvMjQzMjA0MzU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVz

b3VyY2UtbnVtPjEwLjExMTgvMS40ODIzNDYzPC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3Jl

Y29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5EYXM8L0F1dGhvcj48WWVhcj4yMDA3PC9ZZWFyPjxS

ZWNOdW0+MjE0ODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE0ODwvcmVjLW51bWJlcj48

Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1

Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIzNjYxIj4yMTQ4PC9rZXk+PC9mb3JlaWdu

LWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250

cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5EYXMsIE0uPC9hdXRob3I+PGF1dGhvcj5NdWhsZW5i

cnVjaCwgRy48L2F1dGhvcj48YXV0aG9yPkthdG9oLCBNLjwvYXV0aG9yPjxhdXRob3I+QmFrYWks

IEEuPC9hdXRob3I+PGF1dGhvcj5TYWxnYW5pY29mZiwgTS48L2F1dGhvcj48YXV0aG9yPlN0YW56

ZWwsIFMuPC9hdXRob3I+PGF1dGhvcj5NYWhua2VuLCBBLiBILjwvYXV0aG9yPjxhdXRob3I+R3Vu

dGhlciwgUi4gVy48L2F1dGhvcj48YXV0aG9yPldpbGRiZXJnZXIsIEouIEUuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9z

dGljIFJhZGlvbG9neSwgUldUSCBBYWNoZW4gVW5pdmVyc2l0eSwgQWFjaGVuLCBHZXJtYW55LiBk

YXNAcmFkLnJ3dGgtYWFjaGVuLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+QXV0b21h

dGVkIHZvbHVtZXRyeSBvZiBzb2xpZCBwdWxtb25hcnkgbm9kdWxlcyBpbiBhIHBoYW50b206IGFj

Y3VyYWN5IGFjcm9zcyBkaWZmZXJlbnQgQ1Qgc2Nhbm5lciB0ZWNobm9sb2dpZXM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+SW52ZXN0IFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+

SW52ZXN0aWdhdGl2ZSByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48

ZnVsbC10aXRsZT5JbnZlc3QgUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+SW52ZXN0aWdhdGl2ZSBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+

PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+Mjk3LTMwMjwvcGFnZXM+PHZvbHVtZT40Mjwvdm9sdW1l

PjxudW1iZXI+NTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtl

eXdvcmQ+UGF0dGVybiBSZWNvZ25pdGlvbiwgQXV0b21hdGVkLyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkL2luc3RydW1lbnRhdGlvbi9t

ZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3

b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3

b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5IFNjYW5uZXJzLCBYLVJheSBDb21wdXRlZDwva2V5d29y

ZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBTcGlyYWwgQ29tcHV0ZWQvaW5zdHJ1bWVudGF0aW9uLypt

ZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL2luc3Ry

dW1lbnRhdGlvbjwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA3PC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+TWF5PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAyMC05

OTk2IChQcmludCkmI3hEOzAwMjAtOTk5NiAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+

MTc0MTQ1MjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93

d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTc0MTQ1MjU8L3VybD48L3JlbGF0ZWQtdXJscz48

L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwOTcvMDEucmxpLjAwMDAyNTg2ODMu

MjAxMjMuYzQ8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5v

dGU+AG==

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5EYXM8L0F1dGhvcj48WWVhcj4yMDA3PC9ZZWFyPjxSZWNO

dW0+MjE0ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTAtMTgpPC9EaXNwbGF5VGV4dD48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNDg8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTIyMzY2MSI+MjE0ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

RGFzLCBNLjwvYXV0aG9yPjxhdXRob3I+TXVobGVuYnJ1Y2gsIEcuPC9hdXRob3I+PGF1dGhvcj5L

YXRvaCwgTS48L2F1dGhvcj48YXV0aG9yPkJha2FpLCBBLjwvYXV0aG9yPjxhdXRob3I+U2FsZ2Fu

aWNvZmYsIE0uPC9hdXRob3I+PGF1dGhvcj5TdGFuemVsLCBTLjwvYXV0aG9yPjxhdXRob3I+TWFo

bmtlbiwgQS4gSC48L2F1dGhvcj48YXV0aG9yPkd1bnRoZXIsIFIuIFcuPC9hdXRob3I+PGF1dGhv

cj5XaWxkYmVyZ2VyLCBKLiBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0

aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgRGlhZ25vc3RpYyBSYWRpb2xvZ3ksIFJXVEggQWFjaGVu

IFVuaXZlcnNpdHksIEFhY2hlbiwgR2VybWFueS4gZGFzQHJhZC5yd3RoLWFhY2hlbi5kZTwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2Ygc29saWQgcHVs

bW9uYXJ5IG5vZHVsZXMgaW4gYSBwaGFudG9tOiBhY2N1cmFjeSBhY3Jvc3MgZGlmZmVyZW50IENU

IHNjYW5uZXIgdGVjaG5vbG9naWVzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkludmVzdCBSYWRp

b2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkludmVzdGlnYXRpdmUgcmFkaW9sb2d5PC9h

bHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SW52ZXN0IFJhZGlvbDwv

ZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkludmVz

dGlnYXRpdmUgUmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5

Ny0zMDI8L3BhZ2VzPjx2b2x1bWU+NDI8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48a2V5d29y

ZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPlBhdHRlcm4gUmVjb2duaXRpb24s

IEF1dG9tYXRlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8

L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21w

dXRlci1Bc3Npc3RlZC9pbnN0cnVtZW50YXRpb24vbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

ZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD4qVG9tb2dyYXBoeSBT

Y2FubmVycywgWC1SYXkgQ29tcHV0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgU3Bp

cmFsIENvbXB1dGVkL2luc3RydW1lbnRhdGlvbi8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC9pbnN0cnVtZW50YXRpb248L2tleXdvcmQ+PC9rZXl3

b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48

L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjAwMjAtOTk5NiAoUHJpbnQpJiN4RDswMDIwLTk5OTYg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3NDE0NTI1PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3NDE0NTI1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMDk3LzAxLnJsaS4wMDAwMjU4NjgzLjIwMTIzLmM0PC9lbGVjdHJvbmljLXJlc291

cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFll

YXI+MjAwODwvWWVhcj48UmVjTnVtPjE4OTk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4

OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6

YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5Pjwv

Zm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlw

ZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48

YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRob3I+PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9y

PjxhdXRob3I+TWlsbGVyLCBKLiBWLjwvYXV0aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0

aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBHLiBBLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1

dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZl

cnNpdHkgb2YgU291dGggQ2Fyb2xpbmEsIDE2OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBD

aGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiByYXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNz

Pjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBub2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29u

c3RydWN0aW9uIHBhcmFtZXRlcnMgb24gYXV0b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9t

IHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxl

PjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48

L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04PC9wYWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1i

ZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

TGluZWFyIE1vZGVsczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3Jk

PjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3Jh

cGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtl

eXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJkczwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypwYXRob2xvZ3kvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9t

b2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0

ZXM+PHllYXI+MjAwODwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRl

cz48L2RhdGVzPjxhY2Nlc3Npb24tbnVtPjE4NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxy

ZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5

LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtkYj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xp

c3RfdWlkcz0xODQzMDg3NCA8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9D

aXRlPjxDaXRlPjxBdXRob3I+R29vPC9BdXRob3I+PFllYXI+MjAwNTwvWWVhcj48UmVjTnVtPjE4

OTg8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTg8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+R29vLCBKLiBNLjwvYXV0aG9yPjxhdXRob3I+VG9uZ2RlZSwgVC48L2F1dGhvcj48

YXV0aG9yPlRvbmdkZWUsIFIuPC9hdXRob3I+PGF1dGhvcj5ZZW8sIEsuPC9hdXRob3I+PGF1dGhv

cj5IaWxkZWJvbHQsIEMuIEYuPC9hdXRob3I+PGF1dGhvcj5CYWUsIEsuIFQuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWFsbGluY2tyb2R0IEluc3RpdHV0

ZSBvZiBSYWRpb2xvZ3ksIFdhc2hpbmd0b24gVW5pdmVyc2l0eSBTY2hvb2wgb2YgTWVkaWNpbmUs

IDUxMCBTIEtpbmdzaGlnaHdheSBCbHZkLCBTdCBMb3VpcywgTU8gNjMxMTAsIFVTQS48L2F1dGgt

YWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50IG9mIHN5bnRoZXRp

YyBsdW5nIG5vZHVsZXMgd2l0aCBtdWx0aS1kZXRlY3RvciByb3cgQ1Q6IGVmZmVjdCBvZiB2YXJp

b3VzIGltYWdlIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgYW5kIHNlZ21lbnRhdGlvbiB0aHJl

c2hvbGRzIG9uIG1lYXN1cmVtZW50IGFjY3VyYWN5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJh

ZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxl

PlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjg1MC02PC9wYWdlcz48

dm9sdW1lPjIzNTwvdm9sdW1lPjxudW1iZXI+MzwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5B

Y3J5bGljIFJlc2luczwva2V5d29yZD48a2V5d29yZD4qSW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5

d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDU8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5KdW48L2RhdGU+

PC9wdWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4xNTkxNDQ3ODwvYWNjZXNzaW9uLW51

bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2Vu

dHJlei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0

aW9uJmFtcDtsaXN0X3VpZHM9MTU5MTQ0NzggPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFy

PjxSZWNOdW0+MjE0OTwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE0OTwvcmVjLW51bWJl

cj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFw

dnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIzOTM3Ij4yMTQ5PC9rZXk+PC9mb3Jl

aWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxj

b250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFy

bmhhcnQsIEguPC9hdXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwvYXV0aG9yPjxhdXRob3I+Q29s

c2hlciwgSi48L2F1dGhvcj48YXV0aG9yPkFtdXJhbywgTS48L2F1dGhvcj48YXV0aG9yPlNhbWVp

LCBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1lZGlj

YWwgUGh5c2ljcyBHcmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZlcnNpdHksIER1cmhhbSwgTkMg

Mjc3MDUsIFVTQS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5RdWFudGl0YXRpdmUgQ1Q6

IHRlY2huaXF1ZSBkZXBlbmRlbmNlIG9mIHZvbHVtZSBlc3RpbWF0aW9uIG9uIHB1bG1vbmFyeSBu

b2R1bGVzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlBoeXMgTWVkIEJpb2w8L3NlY29uZGFyeS10

aXRsZT48YWx0LXRpdGxlPlBoeXNpY3MgaW4gbWVkaWNpbmUgYW5kIGJpb2xvZ3k8L2FsdC10aXRs

ZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5QaHlzIE1lZCBCaW9sPC9mdWxsLXRp

dGxlPjxhYmJyLTE+UGh5c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWJici0xPjwvcGVy

aW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UGh5cyBNZWQgQmlvbDwvZnVsbC10

aXRsZT48YWJici0xPlBoeXNpY3MgaW4gbWVkaWNpbmUgYW5kIGJpb2xvZ3k8L2FiYnItMT48L2Fs

dC1wZXJpb2RpY2FsPjxwYWdlcz4xMzM1LTQ4PC9wYWdlcz48dm9sdW1lPjU3PC92b2x1bWU+PG51

bWJlcj41PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFudGhyb3BvbWV0cnk8L2tleXdvcmQ+

PGtleXdvcmQ+RXF1aXBtZW50IERlc2lnbjwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tleXdvcmQ+PGtleXdvcmQ+

THVuZy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9kaWFnbm9z

aXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TW9kZWxzLCBTdGF0aXN0aWNhbDwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5Qb2x5cHJv

cHlsZW5lcy9jaGVtaXN0cnk8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJl

c3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRh

cnkgUHVsbW9uYXJ5IE5vZHVsZS9kaWFnbm9zaXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3

b3JkPlRob3JheC9wYXRob2xvZ3k8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkg

Q29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMjwv

eWVhcj48cHViLWRhdGVzPjxkYXRlPk1hciA3PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlz

Ym4+MTM2MS02NTYwIChFbGVjdHJvbmljKSYjeEQ7MDAzMS05MTU1IChMaW5raW5nKTwvaXNibj48

YWNjZXNzaW9uLW51bT4yMjM0OTI2NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMjM0OTI2NTwvdXJsPjwv

cmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA4OC8wMDMx

LTkxNTUvNTcvNS8xMzM1PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MjE1

MDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1r

ZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNm

YWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJl

Zi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+

PGF1dGhvcnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0u

IEwuPC9hdXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwv

YXV0aG9yPjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1

dGhvcj48YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlv

bG9naWNoZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmlj

byBBLiBHZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5

IG5vZHVsZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVz

cywgcmVjb25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5

IHJlc3VsdHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48

cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEg

UmFkaW9sb2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1l

ZGljYTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1l

PjExMzwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8

L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFs

ZTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5Q

bGV1cmEvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVu

aGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtl

eXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdv

cmRzPjxkYXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwv

cHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAo

TGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVy

bHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQv

MTgzMzgxMjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2Ut

bnVtPjEwLjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPlhpZTwvQXV0aG9yPjxZZWFyPjIwMTQ8L1llYXI+

PFJlY051bT4yMTUxPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUxPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQxMzUiPjIxNTE8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPlhpZSwgWC48L2F1dGhvcj48YXV0aG9yPldpbGxl

bWluaywgTS4gSi48L2F1dGhvcj48YXV0aG9yPmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PGF1dGhv

cj52YW4gT29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48

YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhvcj48YXV0aG9yPkdyZXV0ZXIsIE0uIEouPC9h

dXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+MSBEZXBhcnRtZW50

IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNh

bCBDZW50ZXIgR3JvbmluZ2VuLCBQTyBCb3ggMzAuMDAxLCBHcm9uaW5nZW4gOTcwMCBSQiwgVGhl

IE5ldGhlcmxhbmRzLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlNtYWxsIGlycmVndWxh

ciBwdWxtb25hcnkgbm9kdWxlcyBpbiBsb3ctZG9zZSBDVDogb2JzZXJ2ZXIgZGV0ZWN0aW9uIHNl

bnNpdGl2aXR5IGFuZCB2b2x1bWV0cnkgYWNjdXJhY3k8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+

QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVy

aWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9k

aWNhbD48cGFnZXM+VzIwMi05PC9wYWdlcz48dm9sdW1lPjIwMjwvdm9sdW1lPjxudW1iZXI+Mzwv

bnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2lu

ZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9w

bGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk9ic2VydmVyIFZhcmlhdGlvbjwv

a2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJh

ZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaWF0aW9uIFByb3RlY3Rpb24vbWV0

aG9kczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29y

ZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKmluc3RydW1lbnRhdGlvbi8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5UdW1vciBCdXJkZW48L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHll

YXI+MjAxNDwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1hcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2Rh

dGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8

L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjQ1NTU2MTU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0

ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjQ1NTU2MTU8

L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIy

MTQvQUpSLjEzLjEwODMwPC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5XaWxsZW1pbms8L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFyPjxSZWNOdW0+

MjE1MjwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MjwvcmVjLW51bWJlcj48Zm9yZWln

bi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBz

ZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0Mzk4Ij4yMTUyPC9rZXk+PC9mb3JlaWduLWtleXM+

PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRv

cnM+PGF1dGhvcnM+PGF1dGhvcj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5MZWlu

ZXIsIFQuPC9hdXRob3I+PGF1dGhvcj5CdWRkZSwgUi4gUC48L2F1dGhvcj48YXV0aG9yPmRlIEtv

cnQsIEYuIFAuPC9hdXRob3I+PGF1dGhvcj5WbGllZ2VudGhhcnQsIFIuPC9hdXRob3I+PGF1dGhv

cj52YW4gT29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48

YXV0aG9yPmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxh

dXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFV0cmVjaHQgVW5pdmVyc2l0eSBN

ZWRpY2FsIENlbnRlciwgSFAgRTAxLjEzMiwgSGVpZGVsYmVyZ2xhYW4gMTAwLCAzNTg0IENYIFV0

cmVjaHQsIFRoZSBOZXRoZXJsYW5kcy4gbS53aWxsZW1pbmtAdW1jdXRyZWNodC5ubDwvYXV0aC1h

ZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlN5c3RlbWF0aWMgZXJyb3IgaW4gbHVuZyBub2R1bGUgdm9s

dW1ldHJ5OiBlZmZlY3Qgb2YgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIHZlcnN1cyBmaWx0ZXJl

ZCBiYWNrIHByb2plY3Rpb24gYXQgZGlmZmVyZW50IENUIHBhcmFtZXRlcnM8L3RpdGxlPjxzZWNv

bmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3Rp

dGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRp

dGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTI0MS02PC9wYWdlcz48dm9sdW1lPjE5OTwvdm9sdW1l

PjxudW1iZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9n

cmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3Jk

PjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBE

b3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9u

LCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBo

eSwgVGhvcmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+

PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9r

ZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMjwveWVhcj48cHViLWRhdGVzPjxkYXRlPkRlYzwvZGF0

ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAz

NjEtODAzWCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjMxNjk3MTQ8L2FjY2Vzc2lv

bi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdv

di9wdWJtZWQvMjMxNjk3MTQ8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMt

cmVzb3VyY2UtbnVtPjEwLjIyMTQvQUpSLjEyLjg3Mjc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpZWxwdXR6PC9BdXRob3I+PFllYXI+MjAx

MzwvWWVhcj48UmVjTnVtPjIxNTM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTM8L3Jl

Yy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZh

a2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNDQ1NCI+MjE1Mzwva2V5

PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYt

dHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+V2llbHB1dHosIE0uIE8uPC9hdXRo

b3I+PGF1dGhvcj5MZWRlcmxpbiwgTS48L2F1dGhvcj48YXV0aG9yPldyb2JsZXdza2ksIEouPC9h

dXRob3I+PGF1dGhvcj5EaW5rZWwsIEouPC9hdXRob3I+PGF1dGhvcj5FaWNoaW5nZXIsIE0uPC9h

dXRob3I+PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhvcj48YXV0aG9yPkthdWN6b3IsIEguIFUu

PC9hdXRob3I+PGF1dGhvcj5QdWRlcmJhY2gsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9zdGljIGFuZCBJbnRlcnZl

bnRpb25hbCBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgb2YgSGVpZGVsYmVyZywgSW0g

TmV1ZW5oZWltZXIgRmVsZCAxMTAsIDY5MTIwIEhlaWRlbGJlcmcsIEdlcm1hbnkuIE1hcmsud2ll

bHB1ZXR6QG1lZC51bmktaGVpZGVsYmVyZy5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxl

PkNUIHZvbHVtZXRyeSBvZiBhcnRpZmljaWFsIHB1bG1vbmFyeSBub2R1bGVzIHVzaW5nIGFuIGV4

IHZpdm8gbHVuZyBwaGFudG9tOiBpbmZsdWVuY2Ugb2YgZXhwb3N1cmUgcGFyYW1ldGVycyBhbmQg

aXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIG9uIHJlcHJvZHVjaWJpbGl0eTwvdGl0bGU+PHNlY29u

ZGFyeS10aXRsZT5FdXIgSiBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9w

ZWFuIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+

PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyb3BlYW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU3Ny04MzwvcGFnZXM+PHZvbHVtZT44Mjwv

dm9sdW1lPjxudW1iZXI+OTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD4qQWxnb3JpdGhtczwv

a2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUt

RGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5n

PC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGhpYyBJbWFnZSBFbmhhbmNlbWVudC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

YWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRo

b2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3Jk

PjxrZXl3b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5T

b2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3

b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5T

ZXA8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODcyLTc3MjcgKEVsZWN0cm9uaWMp

JiN4RDswNzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNzI3Mzc2PC9h

Y2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxt

Lm5paC5nb3YvcHVibWVkLzIzNzI3Mzc2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVj

dHJvbmljLXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAxMy4wNC4wMzU8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhv

cj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1i

ZXI+MjE1NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2

eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NTIz

Ij4yMTU0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwv

YXV0aG9yPjxhdXRob3I+QmFybmhhcnQsIEguPC9hdXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwv

YXV0aG9yPjxhdXRob3I+Um9iaW5zLCBNLjwvYXV0aG9yPjxhdXRob3I+Q29sc2hlciwgSi48L2F1

dGhvcj48YXV0aG9yPlNhbWVpLCBFLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48

YXV0aC1hZGRyZXNzPk1lZGljYWwgUGh5c2ljcyBHcmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZl

cnNpdHksIER1cmhhbSwgTm9ydGggQ2Fyb2xpbmEgMjc3MDUgYW5kIENhcmwgRS4gUmF2aW4gQWR2

YW5jZWQgSW1hZ2luZyBMYWJvcmF0b3JpZXMsIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOb3J0

aCBDYXJvbGluYSAyNzcwNS48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmlj

IHF1YW50aWZpY2F0aW9uIG9mIGx1bmcgbm9kdWxlcyBpbiBDVCB3aXRoIGl0ZXJhdGl2ZSByZWNv

bnN0cnVjdGlvbiAoQVNpUiBhbmQgTUJJUik8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+TWVkIFBo

eXM8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPk1lZGljYWwgcGh5c2ljczwvYWx0LXRpdGxl

PjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPk1lZCBQaHlzPC9mdWxsLXRpdGxlPjwv

cGVyaW9kaWNhbD48cGFnZXM+MTExOTAyPC9wYWdlcz48dm9sdW1lPjQwPC92b2x1bWU+PG51bWJl

cj4xMTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkFudGhyb3BvbWV0cnkvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3Bs

YXNtcy8qcmFkaW9ncmFwaHkvKnJhZGlvdGhlcmFweTwva2V5d29yZD48a2V5d29yZD5NdWx0aXBs

ZSBQdWxtb25hcnkgTm9kdWxlcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QaGFudG9t

cywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9tZXRyeS9tZXRob2RzPC9rZXl3b3Jk

PjxrZXl3b3JkPlJhZGlvdGhlcmFweSBQbGFubmluZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+

PGtleXdvcmQ+U2NhdHRlcmluZywgUmFkaWF0aW9uPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJl

PC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48

L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9k

YXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDA5NC0yNDA1IChQcmludCkmI3hEOzAwOTQt

MjQwNSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjQzMjA0MzU8L2FjY2Vzc2lvbi1u

dW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9w

dWJtZWQvMjQzMjA0MzU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVz

b3VyY2UtbnVtPjEwLjExMTgvMS40ODIzNDYzPC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3Jl

Y29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5EYXM8L0F1dGhvcj48WWVhcj4yMDA3PC9ZZWFyPjxS

ZWNOdW0+MjE0ODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE0ODwvcmVjLW51bWJlcj48

Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1

Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjIzNjYxIj4yMTQ4PC9rZXk+PC9mb3JlaWdu

LWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250

cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5EYXMsIE0uPC9hdXRob3I+PGF1dGhvcj5NdWhsZW5i

cnVjaCwgRy48L2F1dGhvcj48YXV0aG9yPkthdG9oLCBNLjwvYXV0aG9yPjxhdXRob3I+QmFrYWks

IEEuPC9hdXRob3I+PGF1dGhvcj5TYWxnYW5pY29mZiwgTS48L2F1dGhvcj48YXV0aG9yPlN0YW56

ZWwsIFMuPC9hdXRob3I+PGF1dGhvcj5NYWhua2VuLCBBLiBILjwvYXV0aG9yPjxhdXRob3I+R3Vu

dGhlciwgUi4gVy48L2F1dGhvcj48YXV0aG9yPldpbGRiZXJnZXIsIEouIEUuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9z

dGljIFJhZGlvbG9neSwgUldUSCBBYWNoZW4gVW5pdmVyc2l0eSwgQWFjaGVuLCBHZXJtYW55LiBk

YXNAcmFkLnJ3dGgtYWFjaGVuLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+QXV0b21h

dGVkIHZvbHVtZXRyeSBvZiBzb2xpZCBwdWxtb25hcnkgbm9kdWxlcyBpbiBhIHBoYW50b206IGFj

Y3VyYWN5IGFjcm9zcyBkaWZmZXJlbnQgQ1Qgc2Nhbm5lciB0ZWNobm9sb2dpZXM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+SW52ZXN0IFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+

SW52ZXN0aWdhdGl2ZSByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48

ZnVsbC10aXRsZT5JbnZlc3QgUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+SW52ZXN0aWdhdGl2ZSBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+

PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+Mjk3LTMwMjwvcGFnZXM+PHZvbHVtZT40Mjwvdm9sdW1l

PjxudW1iZXI+NTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtl

eXdvcmQ+UGF0dGVybiBSZWNvZ25pdGlvbiwgQXV0b21hdGVkLyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkL2luc3RydW1lbnRhdGlvbi9t

ZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3

b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3

b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5IFNjYW5uZXJzLCBYLVJheSBDb21wdXRlZDwva2V5d29y

ZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBTcGlyYWwgQ29tcHV0ZWQvaW5zdHJ1bWVudGF0aW9uLypt

ZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL2luc3Ry

dW1lbnRhdGlvbjwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA3PC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+TWF5PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAyMC05

OTk2IChQcmludCkmI3hEOzAwMjAtOTk5NiAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+

MTc0MTQ1MjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93

d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTc0MTQ1MjU8L3VybD48L3JlbGF0ZWQtdXJscz48

L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwOTcvMDEucmxpLjAwMDAyNTg2ODMu

MjAxMjMuYzQ8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5v

dGU+AG==

ADDIN EN.CITE.DATA (10-18) and the in vivo precision PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Xb3JtYW5uczwvQXV0aG9yPjxZZWFyPjIwMDQ8L1llYXI+

PFJlY051bT4yMTU1PC9SZWNOdW0+PERpc3BsYXlUZXh0PigxOS0yNSk8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE1NTwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDQxMjI1MjE4Ij4yMTU1PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5Xb3JtYW5ucywgRC48L2F1dGhvcj48YXV0aG9yPktvaGwsIEcuPC9hdXRob3I+PGF1dGhv

cj5LbG90eiwgRS48L2F1dGhvcj48YXV0aG9yPk1hcmhlaW5lLCBBLjwvYXV0aG9yPjxhdXRob3I+

QmV5ZXIsIEYuPC9hdXRob3I+PGF1dGhvcj5IZWluZGVsLCBXLjwvYXV0aG9yPjxhdXRob3I+RGll

ZGVyaWNoLCBTLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNz

PkRlcGFydG1lbnQgb2YgQ2xpbmljYWwgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IG9mIE11ZW5zdGVy

LCBBbGJlcnQtU2Nod2VpdHplci1TdHJhc3NlIDMzLCA0ODE0OSwgTXVlbnN0ZXIsIEdlcm1hbnku

IGRhZy53b3JtYW5uc0B1bmktbXVlbnN0ZXIuZGU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRs

ZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50cyBvZiBwdWxtb25hcnkgbm9kdWxlcyBhdCBtdWx0aS1y

b3cgZGV0ZWN0b3IgQ1Q6IGluIHZpdm8gcmVwcm9kdWNpYmlsaXR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJh

ZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBS

YWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44Ni05MjwvcGFnZXM+PHZvbHVt

ZT4xNDwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48

a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1

dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qc2Vjb25kYXJ5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlk

ZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9uPC9rZXl3b3JkPjxr

ZXl3b3JkPlByb2JhYmlsaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tl

eXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmlzayBGYWN0b3JzPC9rZXl3b3JkPjxrZXl3

b3JkPlNhbXBsaW5nIFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNw

ZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNv

bGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48

a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tl

eXdvcmRzPjxkYXRlcz48eWVhcj4yMDA0PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SmFuPC9kYXRl

PjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDkzOC03OTk0IChQcmludCkmI3hEOzA5MzgtNzk5

NCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTQ2MTU5MDI8L2FjY2Vzc2lvbi1udW0+

PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJt

ZWQvMTQ2MTU5MDI8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjEwLjEwMDcvczAwMzMwLTAwMy0yMTMyLTA8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdvb2RtYW48L0F1dGhvcj48WWVhcj4yMDA2

PC9ZZWFyPjxSZWNOdW0+MTU5ODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MTU5ODwvcmVj

LW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFr

ZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIwIj4xNTk4PC9rZXk+PC9mb3JlaWdu

LWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250

cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Hb29kbWFuLCBMLiBSLjwvYXV0aG9yPjxhdXRob3I+

R3Vsc3VuLCBNLjwvYXV0aG9yPjxhdXRob3I+V2FzaGluZ3RvbiwgTC48L2F1dGhvcj48YXV0aG9y

Pk5hZ3ksIFAuIEcuPC9hdXRob3I+PGF1dGhvcj5QaWFjc2VrLCBLLiBMLjwvYXV0aG9yPjwvYXV0

aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5

LCBNZWRpY2FsIENvbGxlZ2Ugb2YgV2lzY29uc2luLCA5MjAwIFcgV2lzY29uc2luIEF2ZS4sIE1p

bHdhdWtlZSwgV0kgNTMyMjYtMzU5NiwgVVNBLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxl

PkluaGVyZW50IHZhcmlhYmlsaXR5IG9mIENUIGx1bmcgbm9kdWxlIG1lYXN1cmVtZW50cyBpbiB2

aXZvIHVzaW5nIHNlbWlhdXRvbWF0ZWQgdm9sdW1ldHJpYyBtZWFzdXJlbWVudHM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0

bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L2Z1bGwtdGl0

bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz45ODktOTQ8L3BhZ2VzPjx2b2x1bWU+MTg2PC92b2x1bWU+

PG51bWJlcj40PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9rZXl3b3JkPjxrZXl3

b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdlZCwgODAgYW5kIG92ZXI8L2tleXdvcmQ+PGtl

eXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5M

dW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5N

YWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPk9ic2Vy

dmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0

czwva2V5d29yZD48a2V5d29yZD5SZXNlYXJjaCBTdXBwb3J0LCBOb24tVS5TLiBHb3YmYXBvczt0

PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLypzdGF0aXN0aWNz

ICZhbXA7IG51bWVyaWNhbCBkYXRhPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIw

MDY8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48

YWNjZXNzaW9uLW51bT4xNjU1NDU2ODwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2VudHJlei9xdWVyeS5mY2dpP2NtZD1S

ZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9uJmFtcDtsaXN0X3VpZHM9MTY1

NTQ1Njg8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxB

dXRob3I+R2lldGVtYTwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+PFJlY051bT4yMTQzPC9SZWNO

dW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTQzPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtl

eSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0

aW1lc3RhbXA9IjE0MzkyMzM4MDUiPjIxNDM8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUg

bmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9y

cz48YXV0aG9yPkdpZXRlbWEsIEguIEEuPC9hdXRob3I+PGF1dGhvcj5TY2hhZWZlci1Qcm9rb3As

IEMuIE0uPC9hdXRob3I+PGF1dGhvcj5NYWxpLCBXLiBQLjwvYXV0aG9yPjxhdXRob3I+R3JvZW5l

d2VnZW4sIEcuPC9hdXRob3I+PGF1dGhvcj5Qcm9rb3AsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwv

Y29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZl

cnNpdHkgTWVkaWNhbCBDZW50ZXIsIEhlaWRlbGJlcmdsYWFuIDEwMCwgMzU4NCBDWCBVdHJlY2h0

LCB0aGUgTmV0aGVybGFuZHMuIGguZ2lldGVtYUB1bWN1dHJlY2h0Lm5sPC9hdXRoLWFkZHJlc3M+

PHRpdGxlcz48dGl0bGU+UHVsbW9uYXJ5IG5vZHVsZXM6IEludGVyc2NhbiB2YXJpYWJpbGl0eSBv

ZiBzZW1pYXV0b21hdGVkIHZvbHVtZSBtZWFzdXJlbWVudHMgd2l0aCBtdWx0aXNlY3Rpb24gQ1Qt

LSBpbmZsdWVuY2Ugb2YgaW5zcGlyYXRpb24gbGV2ZWwsIG5vZHVsZSBzaXplLCBhbmQgc2VnbWVu

dGF0aW9uIHBlcmZvcm1hbmNlPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vj

b25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48

YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBl

cmlvZGljYWw+PHBhZ2VzPjg4OC05NDwvcGFnZXM+PHZvbHVtZT4yNDU8L3ZvbHVtZT48bnVtYmVy

PjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdl

ZDwva2V5d29yZD48a2V5d29yZD5BZ2VkLCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5d29yZD5B

bGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1h

bnM8L2tleXdvcmQ+PGtleXdvcmQ+SW5oYWxhdGlvbjwva2V5d29yZD48a2V5d29yZD5NYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZl

IFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0

aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBD

b21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA3PC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MTUyNy0xMzE1IChFbGVjdHJvbmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNibj48YWNj

ZXNzaW9uLW51bT4xNzkyMzUwODwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1

cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xNzkyMzUwODwvdXJsPjwvcmVs

YXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTE0OC9yYWRpb2wu

MjQ1MjA2MTA1NDwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRl

PjxBdXRob3I+UmFtcGluZWxsaTwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTU2

PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU2PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtl

eXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2Zh

ZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjUzNDgiPjIxNTY8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVm

LXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48

YXV0aG9ycz48YXV0aG9yPlJhbXBpbmVsbGksIEMuPC9hdXRob3I+PGF1dGhvcj5EZSBGaW9yaSwg

RS48L2F1dGhvcj48YXV0aG9yPlJhaW1vbmRpLCBTLjwvYXV0aG9yPjxhdXRob3I+VmVyb25lc2ks

IEcuPC9hdXRob3I+PGF1dGhvcj5CZWxsb21pLCBNLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRy

aWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBFdXJvcGVhbiBJ

bnN0aXR1dGUgb2YgT25jb2xvZ3ksIE1pbGFuLCBJdGFseS4gY3Jpc3RpYW5vLnJhbXBpbmVsbGlA

aWVvLml0PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+SW4gdml2byByZXBlYXRhYmlsaXR5

IG9mIGF1dG9tYXRlZCB2b2x1bWUgY2FsY3VsYXRpb25zIG9mIHNtYWxsIHB1bG1vbmFyeSBub2R1

bGVzIHdpdGggQ1Q8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwv

c2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50

Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIg

QW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTY1Ny02MTwv

cGFnZXM+PHZvbHVtZT4xOTI8L3ZvbHVtZT48bnVtYmVyPjY8L251bWJlcj48a2V5d29yZHM+PGtl

eXdvcmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD4qQXJ0aWZpY2lhbCBJbnRlbGxpZ2Vu

Y2U8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29y

ZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5QYXR0

ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9k

czwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48

a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9t

b2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0

ZXM+PHllYXI+MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRl

cz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlu

a2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTk0NTc4MzE8L2FjY2Vzc2lvbi1udW0+PHVybHM+

PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTk0

NTc4MzE8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjIyMTQvQUpSLjA4LjE4MjU8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwv

Q2l0ZT48Q2l0ZT48QXV0aG9yPmRlIEhvb3A8L0F1dGhvcj48WWVhcj4yMDA5PC9ZZWFyPjxSZWNO

dW0+MjEyODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjEyODwvcmVjLW51bWJlcj48Zm9y

ZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2Vm

djBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDA2MjE5MDQ5Ij4yMTI4PC9rZXk+PC9mb3JlaWduLWtl

eXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmli

dXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5kZSBIb29wLCBCLjwvYXV0aG9yPjxhdXRob3I+R2lldGVt

YSwgSC48L2F1dGhvcj48YXV0aG9yPnZhbiBHaW5uZWtlbiwgQi48L2F1dGhvcj48YXV0aG9yPlph

bmVuLCBQLjwvYXV0aG9yPjxhdXRob3I+R3JvZW5ld2VnZW4sIEcuPC9hdXRob3I+PGF1dGhvcj5Q

cm9rb3AsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIFV0cmVj

aHQsIFRoZSBOZXRoZXJsYW5kcywgYi5qLmRlaG9vcEB1bWN1dHJlY2h0Lm5sLjwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkEgY29tcGFyaXNvbiBvZiBzaXggc29mdHdhcmUgcGFja2FnZXMg

Zm9yIGV2YWx1YXRpb24gb2Ygc29saWQgbHVuZyBub2R1bGVzIHVzaW5nIHNlbWktYXV0b21hdGVk

IHZvbHVtZXRyeTogd2hhdCBpcyB0aGUgbWluaW11bSBpbmNyZWFzZSBpbiBzaXplIHRvIGRldGVj

dCBncm93dGggaW4gcmVwZWF0ZWQgQ1QgZXhhbWluYXRpb25zPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJhZGlv

bG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBSYWRp

b2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44MDAtODwvcGFnZXM+PHZvbHVtZT4x

OTwvdm9sdW1lPjxudW1iZXI+NDwvbnVtYmVyPjxlZGl0aW9uPjIwMDgvMTEvMjA8L2VkaXRpb24+

PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+QWdlZCwgODAgYW5kIG92ZXI8L2tleXdvcmQ+PGtleXdvcmQ+QXV0b21hdGljIERh

dGEgUHJvY2Vzc2luZzwva2V5d29yZD48a2V5d29yZD5BdXRvbWF0aW9uPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBOZW9wbGFzbXMvKmRpYWdub3Npcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPipNZWRpY2FsIEluZm9ybWF0aWNzPC9rZXl3b3JkPjxr

ZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBS

ZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0

YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKmRpYWdub3Npcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdv

cmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+QXByPC9kYXRlPjwv

cHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzMi0xMDg0IChFbGVjdHJvbmljKSYjeEQ7MDkzOC03

OTk0IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xOTAxODUzNzwvYWNjZXNzaW9uLW51

bT48d29yay10eXBlPkNvbXBhcmF0aXZlIFN0dWR5PC93b3JrLXR5cGU+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkwMTg1Mzc8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMDcv

czAwMzMwLTAwOC0xMjI5LXg8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjxsYW5ndWFnZT5lbmc8

L2xhbmd1YWdlPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPk1hcmNoaWFubzwvQXV0aG9y

PjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTU3PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJl

cj4yMTU3PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6

eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjU1MTMi

PjIxNTc8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xl

Ij4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk1hcmNoaWFubywg

QS48L2F1dGhvcj48YXV0aG9yPkNhbGFicm8sIEUuPC9hdXRob3I+PGF1dGhvcj5DaXZlbGxpLCBF

LjwvYXV0aG9yPjxhdXRob3I+RGkgVG9sbGEsIEcuPC9hdXRob3I+PGF1dGhvcj5GcmlnZXJpbywg

TC4gRi48L2F1dGhvcj48YXV0aG9yPk1vcm9zaSwgQy48L2F1dGhvcj48YXV0aG9yPlRhZmFybywg

Ri48L2F1dGhvcj48YXV0aG9yPkZlcnJpLCBFLjwvYXV0aG9yPjxhdXRob3I+U3ZlcnplbGxhdGks

IE4uPC9hdXRob3I+PGF1dGhvcj5DYW1lcmluaSwgVC48L2F1dGhvcj48YXV0aG9yPk1hcmlhbmks

IEwuPC9hdXRob3I+PGF1dGhvcj5MbyBWdWxsbywgUy48L2F1dGhvcj48YXV0aG9yPlBhc3Rvcmlu

bywgVS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBh

cnRtZW50IG9mIERpYWdub3N0aWMgSW1hZ2luZyBhbmQgUmFkaW90aGVyYXB5LCBGb25kYXppb25l

IElSQ0NTIElzdGl0dXRvIE5hemlvbmFsZSBkZWkgVHVtb3JpLCBWaWEgVmVuZXppYW4gMSwgMjAx

MzMgTWlsYW4sIEl0YWx5LiBhbGZvbnNvLm1hcmNoaWFub0Bpc3RpdHV0b3R1bW9yaS5taS5pdDwv

YXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBub2R1bGVzOiB2b2x1bWUgcmVw

ZWF0YWJpbGl0eSBhdCBtdWx0aWRldGVjdG9yIENUIGx1bmcgY2FuY2VyIHNjcmVlbmluZzwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

PlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJh

ZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz45MTktMjU8

L3BhZ2VzPjx2b2x1bWU+MjUxPC92b2x1bWU+PG51bWJlcj4zPC9udW1iZXI+PGtleXdvcmRzPjxr

ZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29y

ZD5BbmFseXNpcyBvZiBWYXJpYW5jZTwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkl0YWx5PC9rZXl3b3JkPjxrZXl3b3Jk

Pkx1bmcgTmVvcGxhc21zL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SZXBy

b2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25h

cnkgTm9kdWxlL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dy

YXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+

PHllYXI+MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRlcz48

L2RhdGVzPjxpc2JuPjE1MjctMTMxNSAoRWxlY3Ryb25pYykmI3hEOzAwMzMtODQxOSAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTkzODA2OTI8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkzODA2

OTI8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjExNDgvcmFkaW9sLjI1MTMwODEzMTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPktvPC9BdXRob3I+PFllYXI+MjAxMjwvWWVhcj48UmVjTnVt

PjIxNTg8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTg8L3JlYy1udW1iZXI+PGZvcmVp

Z24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYw

c2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNTU4NiI+MjE1ODwva2V5PjwvZm9yZWlnbi1rZXlz

PjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0

b3JzPjxhdXRob3JzPjxhdXRob3I+S28sIEouIFAuPC9hdXRob3I+PGF1dGhvcj5CZXJtYW4sIEUu

IEouPC9hdXRob3I+PGF1dGhvcj5LYXVyLCBNLjwvYXV0aG9yPjxhdXRob3I+QmFiYiwgSi4gUy48

L2F1dGhvcj48YXV0aG9yPkJvbXN6dHlrLCBFLjwvYXV0aG9yPjxhdXRob3I+R3JlZW5iZXJnLCBB

LiBLLjwvYXV0aG9yPjxhdXRob3I+TmFpZGljaCwgRC4gUC48L2F1dGhvcj48YXV0aG9yPlJ1c2lu

ZWssIEguPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVw

YXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE5ldyBZb3JrIFVuaXZlcnNpdHkgTGFuZ29uZSBNZWRpY2Fs

IENlbnRlciwgNTYwIDFzdCBBdmUsIE5ldyBZb3JrLCBOWSAxMDAxNiwgVVNBLiBqYW5lLmtvQG55

dW1jLm9yZzwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBOb2R1bGVzOiBn

cm93dGggcmF0ZSBhc3Nlc3NtZW50IGluIHBhdGllbnRzIGJ5IHVzaW5nIHNlcmlhbCBDVCBhbmQg

dGhyZWUtZGltZW5zaW9uYWwgdm9sdW1ldHJ5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlv

bG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90

aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVy

aW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxl

PjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjY2Mi03MTwvcGFnZXM+PHZvbHVtZT4yNjI8L3ZvbHVt

ZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+KkFsZ29yaXRobXM8L2tleXdv

cmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5

d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgRW5oYW5jZW1lbnQvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3Jk

PjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNl

bnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBY

LVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4y

MDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+

PGlzYm4+MTUyNy0xMzE1IChFbGVjdHJvbmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNi

bj48YWNjZXNzaW9uLW51bT4yMjE1Njk5MzwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11

cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMjE1Njk5MzwvdXJs

PjwvcmVsYXRlZC11cmxzPjwvdXJscz48Y3VzdG9tMj4zMjY3MDgwPC9jdXN0b20yPjxlbGVjdHJv

bmljLXJlc291cmNlLW51bT4xMC4xMTQ4L3JhZGlvbC4xMTEwMDg3ODwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Xb3JtYW5uczwvQXV0aG9yPjxZZWFyPjIwMDQ8L1llYXI+

PFJlY051bT4yMTU1PC9SZWNOdW0+PERpc3BsYXlUZXh0PigxOS0yNSk8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE1NTwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDQxMjI1MjE4Ij4yMTU1PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5Xb3JtYW5ucywgRC48L2F1dGhvcj48YXV0aG9yPktvaGwsIEcuPC9hdXRob3I+PGF1dGhv

cj5LbG90eiwgRS48L2F1dGhvcj48YXV0aG9yPk1hcmhlaW5lLCBBLjwvYXV0aG9yPjxhdXRob3I+

QmV5ZXIsIEYuPC9hdXRob3I+PGF1dGhvcj5IZWluZGVsLCBXLjwvYXV0aG9yPjxhdXRob3I+RGll

ZGVyaWNoLCBTLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNz

PkRlcGFydG1lbnQgb2YgQ2xpbmljYWwgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IG9mIE11ZW5zdGVy

LCBBbGJlcnQtU2Nod2VpdHplci1TdHJhc3NlIDMzLCA0ODE0OSwgTXVlbnN0ZXIsIEdlcm1hbnku

IGRhZy53b3JtYW5uc0B1bmktbXVlbnN0ZXIuZGU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRs

ZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50cyBvZiBwdWxtb25hcnkgbm9kdWxlcyBhdCBtdWx0aS1y

b3cgZGV0ZWN0b3IgQ1Q6IGluIHZpdm8gcmVwcm9kdWNpYmlsaXR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJh

ZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBS

YWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44Ni05MjwvcGFnZXM+PHZvbHVt

ZT4xNDwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48

a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1

dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qc2Vjb25kYXJ5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlk

ZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9uPC9rZXl3b3JkPjxr

ZXl3b3JkPlByb2JhYmlsaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tl

eXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmlzayBGYWN0b3JzPC9rZXl3b3JkPjxrZXl3

b3JkPlNhbXBsaW5nIFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNw

ZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNv

bGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48

a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tl

eXdvcmRzPjxkYXRlcz48eWVhcj4yMDA0PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SmFuPC9kYXRl

PjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDkzOC03OTk0IChQcmludCkmI3hEOzA5MzgtNzk5

NCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTQ2MTU5MDI8L2FjY2Vzc2lvbi1udW0+

PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJt

ZWQvMTQ2MTU5MDI8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjEwLjEwMDcvczAwMzMwLTAwMy0yMTMyLTA8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdvb2RtYW48L0F1dGhvcj48WWVhcj4yMDA2

PC9ZZWFyPjxSZWNOdW0+MTU5ODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MTU5ODwvcmVj

LW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFr

ZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIwIj4xNTk4PC9rZXk+PC9mb3JlaWdu

LWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250

cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Hb29kbWFuLCBMLiBSLjwvYXV0aG9yPjxhdXRob3I+

R3Vsc3VuLCBNLjwvYXV0aG9yPjxhdXRob3I+V2FzaGluZ3RvbiwgTC48L2F1dGhvcj48YXV0aG9y

Pk5hZ3ksIFAuIEcuPC9hdXRob3I+PGF1dGhvcj5QaWFjc2VrLCBLLiBMLjwvYXV0aG9yPjwvYXV0

aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5

LCBNZWRpY2FsIENvbGxlZ2Ugb2YgV2lzY29uc2luLCA5MjAwIFcgV2lzY29uc2luIEF2ZS4sIE1p

bHdhdWtlZSwgV0kgNTMyMjYtMzU5NiwgVVNBLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxl

PkluaGVyZW50IHZhcmlhYmlsaXR5IG9mIENUIGx1bmcgbm9kdWxlIG1lYXN1cmVtZW50cyBpbiB2

aXZvIHVzaW5nIHNlbWlhdXRvbWF0ZWQgdm9sdW1ldHJpYyBtZWFzdXJlbWVudHM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0

bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L2Z1bGwtdGl0

bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz45ODktOTQ8L3BhZ2VzPjx2b2x1bWU+MTg2PC92b2x1bWU+

PG51bWJlcj40PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9rZXl3b3JkPjxrZXl3

b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdlZCwgODAgYW5kIG92ZXI8L2tleXdvcmQ+PGtl

eXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5M

dW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5N

YWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPk9ic2Vy

dmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0

czwva2V5d29yZD48a2V5d29yZD5SZXNlYXJjaCBTdXBwb3J0LCBOb24tVS5TLiBHb3YmYXBvczt0

PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLypzdGF0aXN0aWNz

ICZhbXA7IG51bWVyaWNhbCBkYXRhPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIw

MDY8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48

YWNjZXNzaW9uLW51bT4xNjU1NDU2ODwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxz

Pjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2VudHJlei9xdWVyeS5mY2dpP2NtZD1S

ZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9uJmFtcDtsaXN0X3VpZHM9MTY1

NTQ1Njg8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxB

dXRob3I+R2lldGVtYTwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+PFJlY051bT4yMTQzPC9SZWNO

dW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTQzPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtl

eSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0

aW1lc3RhbXA9IjE0MzkyMzM4MDUiPjIxNDM8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUg

bmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9y

cz48YXV0aG9yPkdpZXRlbWEsIEguIEEuPC9hdXRob3I+PGF1dGhvcj5TY2hhZWZlci1Qcm9rb3As

IEMuIE0uPC9hdXRob3I+PGF1dGhvcj5NYWxpLCBXLiBQLjwvYXV0aG9yPjxhdXRob3I+R3JvZW5l

d2VnZW4sIEcuPC9hdXRob3I+PGF1dGhvcj5Qcm9rb3AsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwv

Y29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZl

cnNpdHkgTWVkaWNhbCBDZW50ZXIsIEhlaWRlbGJlcmdsYWFuIDEwMCwgMzU4NCBDWCBVdHJlY2h0

LCB0aGUgTmV0aGVybGFuZHMuIGguZ2lldGVtYUB1bWN1dHJlY2h0Lm5sPC9hdXRoLWFkZHJlc3M+

PHRpdGxlcz48dGl0bGU+UHVsbW9uYXJ5IG5vZHVsZXM6IEludGVyc2NhbiB2YXJpYWJpbGl0eSBv

ZiBzZW1pYXV0b21hdGVkIHZvbHVtZSBtZWFzdXJlbWVudHMgd2l0aCBtdWx0aXNlY3Rpb24gQ1Qt

LSBpbmZsdWVuY2Ugb2YgaW5zcGlyYXRpb24gbGV2ZWwsIG5vZHVsZSBzaXplLCBhbmQgc2VnbWVu

dGF0aW9uIHBlcmZvcm1hbmNlPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vj

b25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBl

cmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48

YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBl

cmlvZGljYWw+PHBhZ2VzPjg4OC05NDwvcGFnZXM+PHZvbHVtZT4yNDU8L3ZvbHVtZT48bnVtYmVy

PjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdl

ZDwva2V5d29yZD48a2V5d29yZD5BZ2VkLCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5d29yZD5B

bGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1h

bnM8L2tleXdvcmQ+PGtleXdvcmQ+SW5oYWxhdGlvbjwva2V5d29yZD48a2V5d29yZD5NYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZl

IFN0dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0

aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBD

b21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA3PC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MTUyNy0xMzE1IChFbGVjdHJvbmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNibj48YWNj

ZXNzaW9uLW51bT4xNzkyMzUwODwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1

cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xNzkyMzUwODwvdXJsPjwvcmVs

YXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTE0OC9yYWRpb2wu

MjQ1MjA2MTA1NDwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRl

PjxBdXRob3I+UmFtcGluZWxsaTwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTU2

PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU2PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtl

eXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2Zh

ZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjUzNDgiPjIxNTY8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVm

LXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48

YXV0aG9ycz48YXV0aG9yPlJhbXBpbmVsbGksIEMuPC9hdXRob3I+PGF1dGhvcj5EZSBGaW9yaSwg

RS48L2F1dGhvcj48YXV0aG9yPlJhaW1vbmRpLCBTLjwvYXV0aG9yPjxhdXRob3I+VmVyb25lc2ks

IEcuPC9hdXRob3I+PGF1dGhvcj5CZWxsb21pLCBNLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRy

aWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBFdXJvcGVhbiBJ

bnN0aXR1dGUgb2YgT25jb2xvZ3ksIE1pbGFuLCBJdGFseS4gY3Jpc3RpYW5vLnJhbXBpbmVsbGlA

aWVvLml0PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+SW4gdml2byByZXBlYXRhYmlsaXR5

IG9mIGF1dG9tYXRlZCB2b2x1bWUgY2FsY3VsYXRpb25zIG9mIHNtYWxsIHB1bG1vbmFyeSBub2R1

bGVzIHdpdGggQ1Q8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwv

c2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50

Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIg

QW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTY1Ny02MTwv

cGFnZXM+PHZvbHVtZT4xOTI8L3ZvbHVtZT48bnVtYmVyPjY8L251bWJlcj48a2V5d29yZHM+PGtl

eXdvcmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD4qQXJ0aWZpY2lhbCBJbnRlbGxpZ2Vu

Y2U8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29y

ZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5QYXR0

ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9k

czwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48

a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9t

b2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0

ZXM+PHllYXI+MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRl

cz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlu

a2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTk0NTc4MzE8L2FjY2Vzc2lvbi1udW0+PHVybHM+

PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTk0

NTc4MzE8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjIyMTQvQUpSLjA4LjE4MjU8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwv

Q2l0ZT48Q2l0ZT48QXV0aG9yPmRlIEhvb3A8L0F1dGhvcj48WWVhcj4yMDA5PC9ZZWFyPjxSZWNO

dW0+MjEyODwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjEyODwvcmVjLW51bWJlcj48Zm9y

ZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2Vm

djBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDA2MjE5MDQ5Ij4yMTI4PC9rZXk+PC9mb3JlaWduLWtl

eXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmli

dXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5kZSBIb29wLCBCLjwvYXV0aG9yPjxhdXRob3I+R2lldGVt

YSwgSC48L2F1dGhvcj48YXV0aG9yPnZhbiBHaW5uZWtlbiwgQi48L2F1dGhvcj48YXV0aG9yPlph

bmVuLCBQLjwvYXV0aG9yPjxhdXRob3I+R3JvZW5ld2VnZW4sIEcuPC9hdXRob3I+PGF1dGhvcj5Q

cm9rb3AsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIFV0cmVj

aHQsIFRoZSBOZXRoZXJsYW5kcywgYi5qLmRlaG9vcEB1bWN1dHJlY2h0Lm5sLjwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkEgY29tcGFyaXNvbiBvZiBzaXggc29mdHdhcmUgcGFja2FnZXMg

Zm9yIGV2YWx1YXRpb24gb2Ygc29saWQgbHVuZyBub2R1bGVzIHVzaW5nIHNlbWktYXV0b21hdGVk

IHZvbHVtZXRyeTogd2hhdCBpcyB0aGUgbWluaW11bSBpbmNyZWFzZSBpbiBzaXplIHRvIGRldGVj

dCBncm93dGggaW4gcmVwZWF0ZWQgQ1QgZXhhbWluYXRpb25zPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJhZGlv

bG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBSYWRp

b2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44MDAtODwvcGFnZXM+PHZvbHVtZT4x

OTwvdm9sdW1lPjxudW1iZXI+NDwvbnVtYmVyPjxlZGl0aW9uPjIwMDgvMTEvMjA8L2VkaXRpb24+

PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+QWdlZCwgODAgYW5kIG92ZXI8L2tleXdvcmQ+PGtleXdvcmQ+QXV0b21hdGljIERh

dGEgUHJvY2Vzc2luZzwva2V5d29yZD48a2V5d29yZD5BdXRvbWF0aW9uPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBOZW9wbGFzbXMvKmRpYWdub3Npcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPipNZWRpY2FsIEluZm9ybWF0aWNzPC9rZXl3b3JkPjxr

ZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBS

ZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0

YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKmRpYWdub3Npcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdv

cmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+QXByPC9kYXRlPjwv

cHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzMi0xMDg0IChFbGVjdHJvbmljKSYjeEQ7MDkzOC03

OTk0IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xOTAxODUzNzwvYWNjZXNzaW9uLW51

bT48d29yay10eXBlPkNvbXBhcmF0aXZlIFN0dWR5PC93b3JrLXR5cGU+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkwMTg1Mzc8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMDcv

czAwMzMwLTAwOC0xMjI5LXg8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjxsYW5ndWFnZT5lbmc8

L2xhbmd1YWdlPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPk1hcmNoaWFubzwvQXV0aG9y

PjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTU3PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJl

cj4yMTU3PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6

eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjU1MTMi

PjIxNTc8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xl

Ij4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk1hcmNoaWFubywg

QS48L2F1dGhvcj48YXV0aG9yPkNhbGFicm8sIEUuPC9hdXRob3I+PGF1dGhvcj5DaXZlbGxpLCBF

LjwvYXV0aG9yPjxhdXRob3I+RGkgVG9sbGEsIEcuPC9hdXRob3I+PGF1dGhvcj5GcmlnZXJpbywg

TC4gRi48L2F1dGhvcj48YXV0aG9yPk1vcm9zaSwgQy48L2F1dGhvcj48YXV0aG9yPlRhZmFybywg

Ri48L2F1dGhvcj48YXV0aG9yPkZlcnJpLCBFLjwvYXV0aG9yPjxhdXRob3I+U3ZlcnplbGxhdGks

IE4uPC9hdXRob3I+PGF1dGhvcj5DYW1lcmluaSwgVC48L2F1dGhvcj48YXV0aG9yPk1hcmlhbmks

IEwuPC9hdXRob3I+PGF1dGhvcj5MbyBWdWxsbywgUy48L2F1dGhvcj48YXV0aG9yPlBhc3Rvcmlu

bywgVS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBh

cnRtZW50IG9mIERpYWdub3N0aWMgSW1hZ2luZyBhbmQgUmFkaW90aGVyYXB5LCBGb25kYXppb25l

IElSQ0NTIElzdGl0dXRvIE5hemlvbmFsZSBkZWkgVHVtb3JpLCBWaWEgVmVuZXppYW4gMSwgMjAx

MzMgTWlsYW4sIEl0YWx5LiBhbGZvbnNvLm1hcmNoaWFub0Bpc3RpdHV0b3R1bW9yaS5taS5pdDwv

YXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBub2R1bGVzOiB2b2x1bWUgcmVw

ZWF0YWJpbGl0eSBhdCBtdWx0aWRldGVjdG9yIENUIGx1bmcgY2FuY2VyIHNjcmVlbmluZzwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

PlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJh

ZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz45MTktMjU8

L3BhZ2VzPjx2b2x1bWU+MjUxPC92b2x1bWU+PG51bWJlcj4zPC9udW1iZXI+PGtleXdvcmRzPjxr

ZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29y

ZD5BbmFseXNpcyBvZiBWYXJpYW5jZTwva2V5d29yZD48a2V5d29yZD5GZW1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkl0YWx5PC9rZXl3b3JkPjxrZXl3b3Jk

Pkx1bmcgTmVvcGxhc21zL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+

TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SZXBy

b2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25h

cnkgTm9kdWxlL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dy

YXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+

PHllYXI+MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRlcz48

L2RhdGVzPjxpc2JuPjE1MjctMTMxNSAoRWxlY3Ryb25pYykmI3hEOzAwMzMtODQxOSAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTkzODA2OTI8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkzODA2

OTI8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjExNDgvcmFkaW9sLjI1MTMwODEzMTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPktvPC9BdXRob3I+PFllYXI+MjAxMjwvWWVhcj48UmVjTnVt

PjIxNTg8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTg8L3JlYy1udW1iZXI+PGZvcmVp

Z24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYw

c2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNTU4NiI+MjE1ODwva2V5PjwvZm9yZWlnbi1rZXlz

PjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0

b3JzPjxhdXRob3JzPjxhdXRob3I+S28sIEouIFAuPC9hdXRob3I+PGF1dGhvcj5CZXJtYW4sIEUu

IEouPC9hdXRob3I+PGF1dGhvcj5LYXVyLCBNLjwvYXV0aG9yPjxhdXRob3I+QmFiYiwgSi4gUy48

L2F1dGhvcj48YXV0aG9yPkJvbXN6dHlrLCBFLjwvYXV0aG9yPjxhdXRob3I+R3JlZW5iZXJnLCBB

LiBLLjwvYXV0aG9yPjxhdXRob3I+TmFpZGljaCwgRC4gUC48L2F1dGhvcj48YXV0aG9yPlJ1c2lu

ZWssIEguPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVw

YXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE5ldyBZb3JrIFVuaXZlcnNpdHkgTGFuZ29uZSBNZWRpY2Fs

IENlbnRlciwgNTYwIDFzdCBBdmUsIE5ldyBZb3JrLCBOWSAxMDAxNiwgVVNBLiBqYW5lLmtvQG55

dW1jLm9yZzwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBOb2R1bGVzOiBn

cm93dGggcmF0ZSBhc3Nlc3NtZW50IGluIHBhdGllbnRzIGJ5IHVzaW5nIHNlcmlhbCBDVCBhbmQg

dGhyZWUtZGltZW5zaW9uYWwgdm9sdW1ldHJ5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlv

bG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90

aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVy

aW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxl

PjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjY2Mi03MTwvcGFnZXM+PHZvbHVtZT4yNjI8L3ZvbHVt

ZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+KkFsZ29yaXRobXM8L2tleXdv

cmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5

d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgRW5oYW5jZW1lbnQvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMg

SW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3Jk

PjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNl

bnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxt

b25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBY

LVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4y

MDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+

PGlzYm4+MTUyNy0xMzE1IChFbGVjdHJvbmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNi

bj48YWNjZXNzaW9uLW51bT4yMjE1Njk5MzwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11

cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMjE1Njk5MzwvdXJs

PjwvcmVsYXRlZC11cmxzPjwvdXJscz48Y3VzdG9tMj4zMjY3MDgwPC9jdXN0b20yPjxlbGVjdHJv

bmljLXJlc291cmNlLW51bT4xMC4xMTQ4L3JhZGlvbC4xMTEwMDg3ODwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE.DATA (19-25) of volumetric CT methods. This document proposes standardized methods for performing repeatable volume measurements on CT images of solid pulmonary nodules obtained using a reduced radiation dose in the setting of lung cancer screening and nodule follow-up in the interval between scans (52).Lung cancer CT screening presents the challenge of developing a protocol that balances the benefit of detecting and accurately characterizing lung nodules against the potential risk of radiation exposure in this asymptomatic population of persons who may undergo annual screening for more than two decades. Our understanding of the extent to which performing scans at the lowest dose possible with the associated increase in noise impacts our ability to accurately measure these small nodules is still evolving. Therefore, any protocol will involve a compromise between these competing needs.This QIBA Profile makes Claims about the confidence with which lung nodule volume and changes in lung nodule volume can be measured under a set of defined image acquisition, processing, and analysis conditions, and provides specifications that may be adopted by users and equipment developers to meet targeted levels of clinical performance in identified settings. The intended audiences of this document include healthcare professionals and all other stakeholders invested in lung cancer screening, including but not limited to:Radiologists, technologists, and physicists designing protocols for CT screeningRadiologists, technologists, physicists, and administrators at healthcare institutions considering specifications for procuring new CT equipmentTechnical staff of software and device manufacturers who create products for this purpose Biopharmaceutical companiesClinicians engaged in screening processClinical trialistsRadiologists and other health care providers making quantitative measurements on CT imagesOncologists, regulators, professional societies, and others making decisions based on quantitative image measurementsRadiologists, health care providers, administrators and government officials developing and implementing policies for lung cancer screeningNote that specifications stated as “requirements” in this document are only requirements to achieve the Claim, not “requirements on standard of care.” Specifically, meeting the goals of this Profile is secondary to properly caring for the patient.This Profile is relevant to asymptomatic persons participating in a CT screening and surveillance program for lung cancer. In theory, the activities covered in this Profile also pertain to patients with known or incidentally-detected solid pulmonary nodules in the 6-12 mm diameter range, though surveillance in this or other settings is not specifically addressed by this Profile.Clinical Interpretation For Claim 1 (nodule volume)The true size of a nodule is defined by the measured volume and the 95% confidence intervals. The confidence intervals can be thought of as “error bars” or “uncertainty” or “noise” around the measurement, and the true volume of the nodule is somewhere within the confidence intervals. Application of these Claims to clinical practice is illustrated by the following examples:Example 1: A nodule is measured as having a volume of 150 mm3 (6.6 mm diameter). There is a 95% probability that the true volume of the nodule is between 65 mm3 [150 – (150 x 1.96 x 0.29)] (5.0 mm diameter) and 235 mm3 [150 + (150 x 1.96 x 0.29)] (7.7 mm diameter).Example 2: A nodule is measured as having a volume of 500 mm3 (9.8 mm diameter). There is a 95% probability that the true volume of the nodule is between 343 mm3 [500 - (500 x 1.96 x 0.16)] (8.7 mm diameter) and 657 mm3 [500 + (500 x 1.96 x 0.16)] (10.8 mm diameter).Example 3: A nodule is measured as having a volume of 800 mm3 (11.5 mm diameter). There is a 95% probability that the true volume of the nodule is between 612 mm3 [800 - (800 x 1.96 x 0.12)] (10.5 mm diameter) and 988 mm3 [800 + (800 x 1.96 x 0.12)] (12.4 mm diameter).If the activities specified in this Profile are followed, the measured volume of nodules in each of the given size ranges can be considered accurate to within the given 95% confidence limits. The different coefficients of variation of the different nodule size ranges in Claim 1 reflect the increasing variability introduced as the resolution limits of the measuring device are approached, and the likely impact of variations permitted by the Specifications of this Profile. The guidance provided here represents an estimate of minimum measurement error when conforming to the Profile over a wide range of scanner models. However, these estimates can be reduced substantially when using more advanced scanning equipment with improved performance characteristics. These Claims have been informed by clinical trial data, theoretical analysis, simulations, review of the literature, and expert consensus. They have not yet been fully substantiated by studies that strictly conform to the specifications given here. The expectation is that during implementation in the clinical setting, data on the actual performance will be collected and any appropriate changes made to the Claim or the details of the Profile. At that point, this caveat may be removed or re-stated. Clinical Interpretation For Claim 2 (nodule volume change)The precision value in the Claim statement is the change necessary to be 95% certain that there has really been a change. If a tumor changes size beyond these limits, you can be 95% confident there has been a true change in the size of the tumor, and the perceived change is not just measurement variability. Note that this does not address the biological significance of the change, just the likelihood that the measured change is real. Application of these Claims to clinical practice is illustrated by the following examples:Example 1: A nodule measuring 524 mm3?at baseline (10.0 mm diameter) measures 917 mm3?(12.0 mm diameter) at follow-up, for a measured volume change of +393 mm3 (or a 75% increase in volume) [i.e. (917-524)/524 x 100 = 75%]. For this 10 mm nodule at baseline, we apply the CV from the fifth row of Table 1: since 75% > 39% [i.e. 75% > 2.77 x 0.14 x 100], we are 95% confident that the measured change represents a real change in nodule volume. To quantify the magnitude of the change, we construct the 95% confidence for the true change. The 95% confidence interval for the true change is?(917-524) + 1.96 x ([0.14 x 524]2 + [0.11 x 917]2), which equals 393 ± 244. The 95% CI for the change in volume is thus [149 mm3 – 637 mm3]. This means that the nodule at time point 2 is between 149 and 637 mm3 larger than at baseline.Example 2: A nodule measuring 180 mm3?at baseline (7.0 mm diameter) measures 270 mm3?(8.0 mm diameter) at follow-up, for a measured volume change of 90 mm3, or +50% [i.e. (270-180)/180 x 100 = 50%]. Since this was a 7 mm nodule at baseline, we apply the?CV from the first row of the table: since 50% < 80% [i.e. 50% < 2.77 x 0.23 x 100]; we cannot be confident that this measured change represents a real change in the tumor volume.If the activities specified in this Profile are followed, the measured change in volume of nodules in each of the given size ranges can be considered accurate to within the given 95% confidence limits. The different coefficients of variation of the different nodule size ranges in Claim 1 reflect the increasing variability introduced as the resolution limits of the measuring device are approached, and the likely impact of variations permitted by the Specifications of this Profile. These Claims represent the repeatability coefficient (RC = 1.96 2×wCV) for nodules in each size range. The Claims have been informed by clinical trial data, theoretical analysis, simulations, review of the literature, and expert consensus. They have not yet been fully substantiated by studies that strictly conform to the specifications given here. The expectation is that during implementation in the clinical setting, data on the actual performance will be collected and any appropriate changes made to the Claim or the details of the Profile. At that point, this caveat may be removed or re-stated. Claim 2 assumes the same compliant actors (acquisition device, radiologist, image analysis tool, etc.) at the two time points. If one or more of the actors are different, it is expected that the measurement performance will be reduced. A web based calculator for computing the equations in the Claims is available at . Profile ActivitiesThe Profile is documented in terms of “Actors” performing “Activities”. Equipment, software, staff, or sites may claim conformance to this Profile as one or more of the “Actors” in the following table. Conformant Actors shall support the listed Activities by demonstrating conformance to all Requirements in the referenced Section. Table 3-1: Actors and Required ActivitiesActorActivitySectionAcquisition DeviceProduct Validation3.1Image Analysis ToolProduct Validation3.1TechnologistStaff Qualification3.2Subject Handling3.6Image Data Acquisition3.7Image Data Reconstruction3.8Image Quality Assurance3.9RadiologistStaff Qualification3.2Protocol Design3.4Subject Selection3.5Subject Handling3.6PhysicistEquipment Quality Assurance3.3Protocol Design3.4Referring ClinicianSubject Selection3.5Image AnalystStaff Qualification3.2Image Quality Assurance3.9Image Analysis3.10Formal claims of conformance by the organization responsible for an Actor shall be in the form of a published QIBA Conformance Statement. Manufacturers publishing a QIBA Conformance Statement shall provide a set of “Model-specific Parameters” describing how their product was configured to achieve conformance. The Specifications and Assessment Procedures described in Sections 3 & 4 of this Profile reflect those expected in standard clinical CT practice, including the settings in which the data that support the Claims of this Profile were acquired. There is potential to specify more rigorous assessment procedures for both CT equipment and analysis tool software that justify a reduction in the measurement variance found in the current Claims. Through continued investigation of technical sources of variance, and quantitative characterization of the improvements in accuracy and precision that can be achieved by further refining the Specifications of this Profile, it is anticipated that future versions of this Profile will contain both improved Claims and more specific Assessment Procedures relevant to quantitative imaging.The requirements in this Profile do not codify a Standard of Care; they only provide guidance intended to achieve the stated Claims. Failing to comply with a “shall” in this Profile is a protocol deviation. Although deviations invalidate the Profile Claims, such deviations may be reasonable and unavoidable and the radiologist or supervising physician is expected to do so when required by the best interest of the patient or research subject. How study sponsors and others decide to handle deviations for their own purposes is entirely up to them.For the Acquisition Device and Image Analysis Tool actors, while it will typically be the manufacturer who claims the actor is conformant, it is certainly possible for a site to run the necessary tests/checks to confirm compliance and make a corresponding claim. This might happen if a manufacturer is no longer promoting an older model device but a site needs a conformance statement to participate in a clinical trial. The Physicist actor is the preferred person at the site responsible for managing the equipment performance related specifications. At some sites this will be a staff physicist, and at other sites it may be a person who manages a contractor or a service provided by a vendor.The sequencing of the Activities specified in this Profile is shown in Figure 1:AcquireSubtract volumesPatient PrepRecon and Post-processDirectly process images to analyze changeObtain images at 2 time points imagesAssess change per target lesion-OR-Assess change in target lesion volumeVolumechange pertargetlesion %?vtLesionvolume attimepoint (vt)Calculate volumeCalculate volumevolume changesvolumesAcquireSubtract volumesPatient PrepRecon and Post-processDirectly process images to analyze changeObtain images at 2 time points imagesAssess change per target lesion-OR-Assess change in target lesion volumeVolumechange pertargetlesion %?vtLesionvolume attimepoint (vt)Calculate volumeCalculate volumevolume changesvolumesFigure SEQ Figure \* ARABIC 1: CT Tumor Volumetry - Activity SequenceThe method for measuring change in tumor volume may be described as a multistage process. Subjects are prepared for scanning, raw image data is acquired, images are reconstructed and possibly post-processed. Such images are obtained at one or more time points. Image analysis assesses the degree of change between two time points for each evaluable target nodule by calculating absolute volume at each time point and subtracting. When expressed as a percentage, volume change is the difference in volume between the two time points divided by the volume at time point 1. Although this introduces some asymmetry (volume measurements of 50cm3 and 100cm3 represent either a 100% increase or a 50% decrease depending on which was measured first), it is more familiar to clinicians than using the average of the two timepoints as the denominator.The change may be interpreted according to a variety of different response criteria. These response criteria are beyond the scope of this document. Detection and classification of nodules are also beyond the scope of this document. The Profile does not intend to discourage innovation, although it strives to ensure that methods permitted by the profile requirements will result in performance that meets the Profile Claim. The above pipeline provides a reference model. Algorithms which achieve the same result as the reference model but use different methods may be permitted, for example by directly measuring the change between two image sets rather than measuring the absolute volumes separately. Developers of such algorithms are encouraged to work with the appropriate QIBA committee to conduct any groundwork and assessment procedure revisions needed to demonstrate the requisite performance. The requirements included herein are intended to establish a baseline level of capabilities. Providing higher performance or advanced capabilities is both allowed and encouraged. The Profile does not intend to limit how equipment suppliers meet these requirements. 3.1. Product ValidationThis activity involves evaluating the product Actors (Acquisition Device and Image Analysis Tool) prior to their use in the Profile (e.g. at the factory). It includes validations and performance assessments that are necessary to reliably meet the Profile Claim.3.1.1 DiscussionPerformance measurements of specific protocols are not addressed here. Those are included in section 3.4.2. The Number of Detector Rows can influence the scan duration, z-axis resolution, and radiation dose. A primary consideration leading to the requirement that CT scanners have a minimum of 16 detector rows is the desire for the Scan Duration to be no greater than the time for imaging the entire length of the lungs in a single breath-hold, to minimize motion artifacts, at a pitch that provides adequate z-axis resolution. Scanners with fewer than 16 detectors and pitch high enough to allow the entire lung to be scanned in a single breath hold may result in Z-axis resolution that is inadequate for nodule volumetry in some patients (52). Published investigations have demonstrated the accuracy of CT nodule volumetry meeting the Claims of this Profile using 16-detector scanners. 3.1.2 SpecificationParameterActorRequirementAcquisition ProtocolAcquisition DeviceShall be capable of storing protocols and performing scans with all the parameters set as specified in section 3.4.2 "Protocol Design Specification".Acquisition DeviceShall prepare a protocol conformant with section 3.4.2 "Protocol Design Specification" and validate that protocol as described in section 3.4.2.Acquisition ConsistencyAcquisitionDeviceThe same compliant scanner and acquisition protocol shall be used at all acquisition time points.Reading ConsistencyImage Analysis Tool & RadiologistThe same compliant image analysis tool shall be used by the same radiologist at all analysis time points.Number of Detector RowsAcquisition DeviceShall have 16 or more detector rows.Image HeaderAcquisition DeviceShall record in the DICOM image header the actual values for the tags listed in the DICOM Tag column in section 3.4.2 "Protocol Design Specification".Reading ParadigmImage Analysis ToolShall present Images from both time points side-by-side for comparison.Change CalculationImage Analysis ToolShall calculate change as the difference in volume between two time points relative to the volume at the earlier time point.Scientific ValidationImage Analysis ToolShall have appropriate scientific validation, including the properties of measurement linearity, coefficient of variation, and zero bias.3.2. Staff QualificationThis activity involves evaluating the human Actors (Radiologist, Physicist, and Technologist) prior to their participation in the Profile. It includes training, qualification or performance assessments that are necessary to reliably meet the Profile Claim.3.2.1 DiscussionThese requirements, as with any QIBA Profile requirements, are focused on achieving the Profile Claim. Evaluating the medical or professional qualifications of participating actors is beyond the scope of this profile. In clinical practice, it is expected that the Radiologist interpreting the examination often will be the Image Analyst. In some clinical practice situations, and in the clinical research setting, the image analyst may be a non-radiologist professional.Analyst Training should be at a level appropriate for the setting and the purpose of the measurements, and may include instruction in topics such as the generation and components of volumetric CT images; principles of image reconstruction and processing; technical factors influencing quantitative assessment; relevant CT anatomy; definition of a nodule; and image artifacts.3.2.2 SpecificationParameterActorSpecificationACR AccreditationRadiologistShall fulfill the qualifications required by the American College of Radiology CT Accreditation Program. These include certification by the American Board of Radiology or analogous non-U.S. certifying organization; appropriate licensing; documented oversight, interpretation, and reporting of the required ABR minimum number of CT examinations; and compliance with ABR and licensing board continuing education requirements. See: fulfill the qualifications required by the American College of Radiology CT Accreditation Program. These include certification by the American Registry of Radiologic Technologists or analogous non-U.S. certifying organization, appropriate licensing, documented training and experience in performing CT, and compliance with certifying and licensing organization continuing education requirements. See: TrainingImage AnalystShall undergo documented training in performing CT image volumetric analysis of lung nodules in lung cancer screening by a radiologist having qualifications conforming to the requirements of this profile.Note: if the Image Analyst is a Profile-conformant Radiologist, additional training is not required.3.3. Equipment Quality AssuranceThis activity involves quality assurance of the imaging devices that is not directly associated with a specific subject. It includes calibrations, phantom imaging, performance assessments or validations that are necessary to reliably meet the Profile Claim.3.3.1 DiscussionThis activity is focused on ensuring that the acquisition device is aligned/calibrated/functioning normally. Performance measurements of specific protocols are not addressed here. Those are included in section 3.4. Conformance with this Profile requires adherence of CT equipment to U.S. federal regulations (21CFR1020.33) or analogous regulations outside of the U.S., CT equipment performance evaluation procedures of the American College of Radiology CT Accreditation Program (), and quality control procedures of the scanner manufacturer. These assessment procedures include a technical performance evaluation of the CT scanner by a qualified medical physicist at least annually. Parameters evaluated include those critical for quantitative volumetric assessment of small nodules, such as spatial resolution, section thickness, and table travel accuracy, as well as dosimetry. Daily quality control must include monitoring of water CT number and standard deviation and artifacts. In addition, preventive maintenance at appropriate regular intervals must be conducted and documented by a qualified service engineer.These specifications reflect the clinical and clinical trial settings which produced the data used to support the Claims of this Profile. Data were obtained from a broad range of CT scanner models having a range of performance capabilities that is reflected in the size of the confidence bounds of the Claims. Ongoing research is identifying the key technical parameters determining performance in the lung cancer screening setting, and establishing metrics that may allow Claims with narrower confidence bounds than are found in this Profile to be met for certain CT scanners through more specific technical specifications and associated assessment procedures. Such metrics and assessment procedures more specific to CT volumetry in lung cancer screening will be addressed in subsequent versions of this Profile.3.3.2 SpecificationParameterActorRequirementQuality ControlPhysicistShall perform quality control procedures consistent with those generally accepted for routine clinical imaging. Quality ControlPhysicistShall adhere to installation and periodic quality control procedures specified by the scanner manufacturer and the American College of Radiology CT Accreditation Program.See ensure that preventive maintenance at appropriate regular intervals are conducted and documented by a qualified service engineer as recommended by the scanner manufacturer.3.4. Protocol DesignThis activity involves designing acquisition and reconstruction protocols for use in the Profile. It includes constraints on protocol acquisition and reconstruction parameters that are necessary to reliably meet the Profile Claim.3.4.1 DiscussionThe Profile considers Protocol Design to take place at the imaging site, however sites may choose to make use of protocols developed elsewhere. The approach of the specifications here, is to focus as much as possible on the characteristics of the resulting dataset, rather than one particular technique for achieving those characteristics. This is intended to allow as much flexibility as possible for product innovation and reasonable adjustments for patient size (such as increasing acquisition mAs and reconstruction DFOV for larger patients), while reaching the performance targets. Again, the technique parameter sets provided by vendors in their Conformance Statements may be helpful for those looking for more guidance.Automatic Exposure Control aims to achieve consistent noise levels throughout the lungs by varying the tube current during scan acquisition. Use of automatic exposure control is expected to have little effect on Profile Claims and is considered optional, though as with other acquisition parameters its use should be consistent with baseline. This scanner feature may be a useful tool for reducing unnecessary radiation exposure in certain patients, but it also can increase radiation exposure depending on the target noise level, patient size and anatomy, and the method employed by the vendor. These factors should be kept in mind when deciding whether to use automatic exposure control in an individual patient.Rotation Time may vary as needed to achieve other settings. Generally it will be less than or equal to 0.5 seconds.In CT screening for lung cancer, the choice of scan acquisition parameters is strongly influenced by the desire to minimize radiation dose. The radiation dose delivered by volumetric CT scanning is indicated by the volume CT Dose Index (CTDIvol). The CTDIvol should be chosen to provide the lowest radiation dose that maintains acceptable image quality for detecting pulmonary nodules. Variability in CT nodule volumetry using low dose techniques is comparable to that of standard dose techniques PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxS

ZWNOdW0+MjE1MDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTQsIDE2LTE4LCAyOSk8L0Rpc3BsYXlU

ZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxr

ZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIg

dGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBl

IG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhv

cnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0uIEwuPC9h

dXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwvYXV0aG9y

PjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1dGhvcj48

YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgt

YWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlvbG9naWNo

ZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmljbyBBLiBH

ZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5IG5vZHVs

ZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVzcywgcmVj

b25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5IHJlc3Vs

dHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxh

bHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEgUmFkaW9s

b2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1lZGljYTwv

YWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1lPjExMzwv

dm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29y

ZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+

PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5QbGV1cmEv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2Vt

ZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxk

YXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRh

dGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTgzMzgx

MjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpbGxlbWluazwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+

PFJlY051bT4yMTUyPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUyPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQzOTgiPjIxNTI8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldpbGxlbWluaywgTS4gSi48L2F1dGhvcj48YXV0

aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9yPjxhdXRo

b3I+ZGUgS29ydCwgRi4gUC48L2F1dGhvcj48YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhv

cj48YXV0aG9yPnZhbiBPb2lqZW4sIFAuIE0uPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwv

YXV0aG9yPjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmli

dXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVXRyZWNodCBVbml2

ZXJzaXR5IE1lZGljYWwgQ2VudGVyLCBIUCBFMDEuMTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1

ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRzLiBtLndpbGxlbWlua0B1bWN1dHJlY2h0Lm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+U3lzdGVtYXRpYyBlcnJvciBpbiBsdW5nIG5v

ZHVsZSB2b2x1bWV0cnk6IGVmZmVjdCBvZiBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gdmVyc3Vz

IGZpbHRlcmVkIGJhY2sgcHJvamVjdGlvbiBhdCBkaWZmZXJlbnQgQ1QgcGFyYW1ldGVyczwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjQxLTY8L3BhZ2VzPjx2b2x1bWU+MTk5

PC92b2x1bWU+PG51bWJlcj42PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8

L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21z

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8

L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJw

cmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGh5LCBUaG9yYWNpYy8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzE2OTcxNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzE2OTcxNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTIuODcyNzwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2llbHB1dHo8L0F1dGhvcj48

WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1MzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE1MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NDU0Ij4y

MTUzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XaWVscHV0eiwgTS4g

Ty48L2F1dGhvcj48YXV0aG9yPkxlZGVybGluLCBNLjwvYXV0aG9yPjxhdXRob3I+V3JvYmxld3Nr

aSwgSi48L2F1dGhvcj48YXV0aG9yPkRpbmtlbCwgSi48L2F1dGhvcj48YXV0aG9yPkVpY2hpbmdl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjxhdXRob3I+S2F1Y3pv

ciwgSC4gVS48L2F1dGhvcj48YXV0aG9yPlB1ZGVyYmFjaCwgTS48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERpYWdub3N0aWMgYW5k

IEludGVydmVudGlvbmFsIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBIb3NwaXRhbCBvZiBIZWlkZWxi

ZXJnLCBJbSBOZXVlbmhlaW1lciBGZWxkIDExMCwgNjkxMjAgSGVpZGVsYmVyZywgR2VybWFueS4g

TWFyay53aWVscHVldHpAbWVkLnVuaS1oZWlkZWxiZXJnLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q1Qgdm9sdW1ldHJ5IG9mIGFydGlmaWNpYWwgcHVsbW9uYXJ5IG5vZHVsZXMgdXNp

bmcgYW4gZXggdml2byBsdW5nIHBoYW50b206IGluZmx1ZW5jZSBvZiBleHBvc3VyZSBwYXJhbWV0

ZXJzIGFuZCBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gb24gcmVwcm9kdWNpYmlsaXR5PC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkV1ciBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+RXVyb3BlYW4gam91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2Fs

PjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXJvcGVhbiBKb3VybmFsIG9mIFJhZGlvbG9n

eTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNTc3LTgzPC9wYWdlcz48dm9s

dW1lPjgyPC92b2x1bWU+PG51bWJlcj45PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPipBbGdv

cml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMs

IEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50LyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8

L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyppbnN0cnVtZW50YXRpb24vKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPlNlcDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE4NzItNzcyNyAoRWxl

Y3Ryb25pYykmI3hEOzA3MjAtMDQ4WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjM3

MjczNzY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM3MjczNzY8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMTYvai5lanJhZC4yMDEzLjA0LjAzNTwv

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q29l

bmVuPC9BdXRob3I+PFllYXI+MjAxMzwvWWVhcj48UmVjTnVtPjIxNjY8L1JlY051bT48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNjY8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTMwOTgxOSI+MjE2Njwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

Q29lbmVuLCBBLjwvYXV0aG9yPjxhdXRob3I+SG9uZGEsIE8uPC9hdXRob3I+PGF1dGhvcj52YW4g

ZGVyIEphZ3QsIEUuIEouPC9hdXRob3I+PGF1dGhvcj5Ub21peWFtYSwgTi48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgT3Nha2EgVW5pdmVyc2l0eSBHcmFkdWF0ZSBTY2hvb2wgb2YgTWVkaWNpbmUsIDItMiBZYW1h

ZGFva2EsIFN1aXRhIENpdHksIE9zYWthLCA1NjUtMDg3MSwgSmFwYW4sIGFkcmlhYW5jb2VuZW5A

Z21haWwuY29tLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNvbXB1dGVyLWFzc2lzdGVk

IHNvbGlkIGx1bmcgbm9kdWxlIDNEIHZvbHVtZXRyeSBvbiBDVDogaW5mbHVlbmNlIG9mIHNjYW4g

bW9kZSBhbmQgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uOiBhIENUIHBoYW50b20gc3R1ZHk8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+SnBuIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10

aXRsZT5KYXBhbmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxw

ZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkpwbiBKIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkph

cGFuZXNlIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBh

bmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2Vz

PjY3Ny04NDwvcGFnZXM+PHZvbHVtZT4zMTwvdm9sdW1lPjxudW1iZXI+MTA8L251bWJlcj48a2V5

d29yZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipJbWFnaW5nLCBUaHJlZS1E

aW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Np

c3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29y

ZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRz

PjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHVi

LWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg2Ny0xMDhYIChFbGVjdHJvbmljKSYjeEQ7MTg2Ny0xMDcx

IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzk1NTMxNzwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1l

ZC8yMzk1NTMxNzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+MTAuMTAwNy9zMTE2MDQtMDEzLTAyMzUtMzwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+

PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTU0PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU0PC9yZWMtbnVt

YmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNh

YXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQ1MjMiPjIxNTQ8L2tleT48L2Zv

cmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+

PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5C

YXJuaGFydCwgSC48L2F1dGhvcj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5S

b2JpbnMsIE0uPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9yPjxhdXRob3I+U2Ft

ZWksIEUuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVk

aWNhbCBQaHlzaWNzIEdyYWR1YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBO

b3J0aCBDYXJvbGluYSAyNzcwNSBhbmQgQ2FybCBFLiBSYXZpbiBBZHZhbmNlZCBJbWFnaW5nIExh

Ym9yYXRvcmllcywgRHVrZSBVbml2ZXJzaXR5LCBEdXJoYW0sIE5vcnRoIENhcm9saW5hIDI3NzA1

LjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlZvbHVtZXRyaWMgcXVhbnRpZmljYXRpb24g

b2YgbHVuZyBub2R1bGVzIGluIENUIHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIChBU2lS

IGFuZCBNQklSKTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5NZWQgUGh5czwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TWVkaWNhbCBwaHlzaWNzPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlv

ZGljYWw+PGZ1bGwtdGl0bGU+TWVkIFBoeXM8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdl

cz4xMTE5MDI8L3BhZ2VzPjx2b2x1bWU+NDA8L3ZvbHVtZT48bnVtYmVyPjExPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+QW50aHJvcG9tZXRy

eS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5n

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qcmFkaW90aGVyYXB5PC9rZXl3b3JkPjxrZXl3b3JkPk11bHRpcGxlIFB1bG1vbmFyeSBOb2R1

bGVzL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFw

aGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5SYWRpb21ldHJ5L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW90

aGVyYXB5IFBsYW5uaW5nLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5

d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TY2F0dGVy

aW5nLCBSYWRpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVz

Pjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+PC9wdWItZGF0ZXM+

PC9kYXRlcz48aXNibj4wMDk0LTI0MDUgKFByaW50KSYjeEQ7MDA5NC0yNDA1IChMaW5raW5nKTwv

aXNibj48YWNjZXNzaW9uLW51bT4yNDMyMDQzNTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRl

ZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMyMDQzNTwv

dXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTEx

OC8xLjQ4MjM0NjM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0Vu

ZE5vdGU+AG==

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxS

ZWNOdW0+MjE1MDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTQsIDE2LTE4LCAyOSk8L0Rpc3BsYXlU

ZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxr

ZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIg

dGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBl

IG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhv

cnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0uIEwuPC9h

dXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwvYXV0aG9y

PjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1dGhvcj48

YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgt

YWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlvbG9naWNo

ZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmljbyBBLiBH

ZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5IG5vZHVs

ZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVzcywgcmVj

b25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5IHJlc3Vs

dHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxh

bHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEgUmFkaW9s

b2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1lZGljYTwv

YWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1lPjExMzwv

dm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29y

ZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+

PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5QbGV1cmEv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2Vt

ZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxk

YXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRh

dGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTgzMzgx

MjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpbGxlbWluazwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+

PFJlY051bT4yMTUyPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUyPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQzOTgiPjIxNTI8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldpbGxlbWluaywgTS4gSi48L2F1dGhvcj48YXV0

aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9yPjxhdXRo

b3I+ZGUgS29ydCwgRi4gUC48L2F1dGhvcj48YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhv

cj48YXV0aG9yPnZhbiBPb2lqZW4sIFAuIE0uPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwv

YXV0aG9yPjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmli

dXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVXRyZWNodCBVbml2

ZXJzaXR5IE1lZGljYWwgQ2VudGVyLCBIUCBFMDEuMTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1

ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRzLiBtLndpbGxlbWlua0B1bWN1dHJlY2h0Lm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+U3lzdGVtYXRpYyBlcnJvciBpbiBsdW5nIG5v

ZHVsZSB2b2x1bWV0cnk6IGVmZmVjdCBvZiBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gdmVyc3Vz

IGZpbHRlcmVkIGJhY2sgcHJvamVjdGlvbiBhdCBkaWZmZXJlbnQgQ1QgcGFyYW1ldGVyczwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjQxLTY8L3BhZ2VzPjx2b2x1bWU+MTk5

PC92b2x1bWU+PG51bWJlcj42PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8

L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21z

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8

L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJw

cmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGh5LCBUaG9yYWNpYy8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzE2OTcxNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzE2OTcxNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTIuODcyNzwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2llbHB1dHo8L0F1dGhvcj48

WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1MzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE1MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NDU0Ij4y

MTUzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XaWVscHV0eiwgTS4g

Ty48L2F1dGhvcj48YXV0aG9yPkxlZGVybGluLCBNLjwvYXV0aG9yPjxhdXRob3I+V3JvYmxld3Nr

aSwgSi48L2F1dGhvcj48YXV0aG9yPkRpbmtlbCwgSi48L2F1dGhvcj48YXV0aG9yPkVpY2hpbmdl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjxhdXRob3I+S2F1Y3pv

ciwgSC4gVS48L2F1dGhvcj48YXV0aG9yPlB1ZGVyYmFjaCwgTS48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERpYWdub3N0aWMgYW5k

IEludGVydmVudGlvbmFsIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBIb3NwaXRhbCBvZiBIZWlkZWxi

ZXJnLCBJbSBOZXVlbmhlaW1lciBGZWxkIDExMCwgNjkxMjAgSGVpZGVsYmVyZywgR2VybWFueS4g

TWFyay53aWVscHVldHpAbWVkLnVuaS1oZWlkZWxiZXJnLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q1Qgdm9sdW1ldHJ5IG9mIGFydGlmaWNpYWwgcHVsbW9uYXJ5IG5vZHVsZXMgdXNp

bmcgYW4gZXggdml2byBsdW5nIHBoYW50b206IGluZmx1ZW5jZSBvZiBleHBvc3VyZSBwYXJhbWV0

ZXJzIGFuZCBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gb24gcmVwcm9kdWNpYmlsaXR5PC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkV1ciBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+RXVyb3BlYW4gam91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2Fs

PjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXJvcGVhbiBKb3VybmFsIG9mIFJhZGlvbG9n

eTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNTc3LTgzPC9wYWdlcz48dm9s

dW1lPjgyPC92b2x1bWU+PG51bWJlcj45PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPipBbGdv

cml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMs

IEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50LyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8

L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyppbnN0cnVtZW50YXRpb24vKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPlNlcDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE4NzItNzcyNyAoRWxl

Y3Ryb25pYykmI3hEOzA3MjAtMDQ4WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjM3

MjczNzY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM3MjczNzY8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMTYvai5lanJhZC4yMDEzLjA0LjAzNTwv

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q29l

bmVuPC9BdXRob3I+PFllYXI+MjAxMzwvWWVhcj48UmVjTnVtPjIxNjY8L1JlY051bT48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNjY8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTMwOTgxOSI+MjE2Njwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

Q29lbmVuLCBBLjwvYXV0aG9yPjxhdXRob3I+SG9uZGEsIE8uPC9hdXRob3I+PGF1dGhvcj52YW4g

ZGVyIEphZ3QsIEUuIEouPC9hdXRob3I+PGF1dGhvcj5Ub21peWFtYSwgTi48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgT3Nha2EgVW5pdmVyc2l0eSBHcmFkdWF0ZSBTY2hvb2wgb2YgTWVkaWNpbmUsIDItMiBZYW1h

ZGFva2EsIFN1aXRhIENpdHksIE9zYWthLCA1NjUtMDg3MSwgSmFwYW4sIGFkcmlhYW5jb2VuZW5A

Z21haWwuY29tLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNvbXB1dGVyLWFzc2lzdGVk

IHNvbGlkIGx1bmcgbm9kdWxlIDNEIHZvbHVtZXRyeSBvbiBDVDogaW5mbHVlbmNlIG9mIHNjYW4g

bW9kZSBhbmQgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uOiBhIENUIHBoYW50b20gc3R1ZHk8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+SnBuIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10

aXRsZT5KYXBhbmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxw

ZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkpwbiBKIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkph

cGFuZXNlIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBh

bmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2Vz

PjY3Ny04NDwvcGFnZXM+PHZvbHVtZT4zMTwvdm9sdW1lPjxudW1iZXI+MTA8L251bWJlcj48a2V5

d29yZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipJbWFnaW5nLCBUaHJlZS1E

aW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Np

c3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29y

ZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRz

PjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHVi

LWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg2Ny0xMDhYIChFbGVjdHJvbmljKSYjeEQ7MTg2Ny0xMDcx

IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzk1NTMxNzwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1l

ZC8yMzk1NTMxNzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+MTAuMTAwNy9zMTE2MDQtMDEzLTAyMzUtMzwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+

PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTU0PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU0PC9yZWMtbnVt

YmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNh

YXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQ1MjMiPjIxNTQ8L2tleT48L2Zv

cmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+

PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5C

YXJuaGFydCwgSC48L2F1dGhvcj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5S

b2JpbnMsIE0uPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9yPjxhdXRob3I+U2Ft

ZWksIEUuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVk

aWNhbCBQaHlzaWNzIEdyYWR1YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBO

b3J0aCBDYXJvbGluYSAyNzcwNSBhbmQgQ2FybCBFLiBSYXZpbiBBZHZhbmNlZCBJbWFnaW5nIExh

Ym9yYXRvcmllcywgRHVrZSBVbml2ZXJzaXR5LCBEdXJoYW0sIE5vcnRoIENhcm9saW5hIDI3NzA1

LjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlZvbHVtZXRyaWMgcXVhbnRpZmljYXRpb24g

b2YgbHVuZyBub2R1bGVzIGluIENUIHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIChBU2lS

IGFuZCBNQklSKTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5NZWQgUGh5czwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TWVkaWNhbCBwaHlzaWNzPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlv

ZGljYWw+PGZ1bGwtdGl0bGU+TWVkIFBoeXM8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdl

cz4xMTE5MDI8L3BhZ2VzPjx2b2x1bWU+NDA8L3ZvbHVtZT48bnVtYmVyPjExPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+QW50aHJvcG9tZXRy

eS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5n

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qcmFkaW90aGVyYXB5PC9rZXl3b3JkPjxrZXl3b3JkPk11bHRpcGxlIFB1bG1vbmFyeSBOb2R1

bGVzL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFw

aGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5SYWRpb21ldHJ5L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW90

aGVyYXB5IFBsYW5uaW5nLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5

d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TY2F0dGVy

aW5nLCBSYWRpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVz

Pjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+PC9wdWItZGF0ZXM+

PC9kYXRlcz48aXNibj4wMDk0LTI0MDUgKFByaW50KSYjeEQ7MDA5NC0yNDA1IChMaW5raW5nKTwv

aXNibj48YWNjZXNzaW9uLW51bT4yNDMyMDQzNTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRl

ZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMyMDQzNTwv

dXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTEx

OC8xLjQ4MjM0NjM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0Vu

ZE5vdGU+AG==

ADDIN EN.CITE.DATA (14, 16-18, 29). As a general guideline, CTDIvol ≤3 mGy should provide sufficient image quality for a person of standard size, defined by the International Commission on Radiation Protection (ICRP) as 5’7”/170 cm and 154 lbs/70 kg. The CTDIvol should be reduced for smaller individuals and may need to be increased for larger individuals, but should be kept constant for the same person at all time points. CTDIvol is determined by the interaction of multiple parameters, including the Tube Potential (kV), Tube Current (mA), tube Rotation Time, and Pitch. Settings for kV, mA, rotation time, and pitch may be varied as needed to achieve the desired CTDIvol. Pitch is chosen so as to allow completion of the scan in a single breath hold with adequate spatial resolution along the subject z-axis. Nominal Tomographic Section Thickness (T), the term preferred by the International Electrotechnical Commission (IEC), is sometimes also called the Single Collimation Width. Choices depend on the detector geometry inherent in the particular scanner model. The Nominal Tomographic Section Thickness affects the spatial resolution along the subject z-axis and the available options for reconstructed section thickness. Thinner sections that allow reconstruction of smaller voxels are preferable, to reduce partial volume effects and provide higher accuracy due to greater spatial resolution. Reconstruction Kernel is recommended to be a medium smooth to medium sharp kernel that provides the highest resolution available without edge enhancement.X-ray CT uses ionizing radiation. Exposure to radiation can pose risks; however as the radiation dose is reduced, image quality can be degraded. It is expected that health care professionals will balance the need for good image quality with the risks of radiation exposure on a case-by-case basis. It is not within the scope of this document to describe how these trade-offs should be resolved. 3.4.2 SpecificationNote: The Radiologist is responsible for the protocol parameter requirements, although they may choose to use a protocol provided by the vendor of the acquisition device. The Radiologist is also responsible for ensuring that protocol validation has taken place (e.g. when it is created or modified), although the Physicist actor or the Technologist actor may also perform the validation. The role of the Physicist actor may be played by an in-house medical physicist, a physics consultant or other staff (such as vendor service or specialists) qualified to perform the validations described.ParameterActorSpecificationDICOM TagAcquisition ProtocolRadiologistShall prepare a protocol to meet the specifications in this table.Shall ensure technologists have been trained on the requirements of this profile.IEC PitchRadiologistShall set to Less than or equal to 2.0 for single source scanners, or the equivalent for dual source scanners.Spiral Pitch Factor(0018,9311)Nominal Tomographic Section Thickness (T)RadiologistShall set to achieve reconstructed slice thickness less than or equal to 1.25mm.Single Collimation Width(0018,9306)Reconstruction ProtocolRadiologistShall prepare a protocol to meet the specifications in this table.Shall ensure technologists have been trained on the requirements of this profile.Reconstructed Image ThicknessRadiologistShall set to less than or equal 1.25mm.Slice Thickness (0018,0050)Reconstructed Image IntervalRadiologistShall set to less than or equal to the Reconstructed Image Thickness (i.e. no gap, may have overlap).Spacing Between Slices (0018,0088)Point Spread FunctionRadiologistShall validate that the protocol achieves:A 3D PSF sigma ellipsoid volume of less than or equal to 1.5mm3, andA Z PSF sigma less than two times larger than the in-plane PSF sigma.Edge EnhancementRadiologistShall validate that the protocol does not result in edge enhancement exceeding 5%.HU DeviationRadiologistShall validate that the protocol results in CT HU value deviation of less than 35 HU for Air, Acrylic, Delrin, and Teflon materials.Voxel NoiseRadiologistShall validate that the protocol achievesa standard deviation that is <= 50 HU for homogeneous Air, Acrylic, and Delrin, and Teflon materials.3D Spatial WarpingRadiologistShall validate that 3D image acquisition results in 3D Spatial warping of less than Z MSE.3.5. Subject SelectionThis activity describes criteria and procedures related to the selection of appropriate imaging subjects that are necessary to reliably meet the Profile Claim.3.5.1 DiscussionPulmonary Symptoms may signify acute or subacute abnormalities in the lungs that could interfere with or alter pulmonary nodule volume measurements, or prevent full cooperation with breath-holding instructions for scanning. Therefore, subjects should be asymptomatic, or at baseline if symptomatic, with respect to cardiac and pulmonary symptoms. If scanning is necessary to avoid an excessive delay in follow-up of a known nodule or to evaluate new symptoms, and these clinical status conditions cannot be met then measurements may not be of sufficient quality to fulfill the Profile Claims. Chronic abnormalities such as pulmonary fibrosis also may invalidate Profile Claims if they affect nodule volume measurement accuracy.Recent diagnostic or therapeutic Medical Procedures may result in parenchymal lung abnormalities that increase lung attenuation around a nodule and invalidate the Claims of this Profile. Examples include bronchoscopy, thoracic surgery, and radiation therapy. Oral contrast administered for unrelated gastrointestinal imaging studies or abdominal CT that remains in the esophagus, stomach, or bowel may cause artifacts in certain areas of the lungs that interfere with quantitative nodule assessment. If artifacts due to oral contrast are present in the same transverse planes as a quantifiable lung nodule, the Profile Claims may not be valid. 3.5.2 SpecificationParameterActorRequirementMedical ProceduresReferring clinicianShall schedule scanning prior to or at an appropriate time following procedures that could alter the attenuation of the lung nodule or surrounding lung tissue.RadiologistPulmonary Symptoms Referring clinicianShall delay scanning for a time period that allows resolution of potential reversible CT abnormalities if pulmonary symptoms are present.Radiologist3.6. Subject HandlingThis activity involves handling each imaging subject at each time point. It includes subject handling details that are necessary to reliably meet the Profile Claim.3.6.1 Discussion This Profile will refer primarily to “subjects”, keeping in mind that the requirements and recommendations apply to patients in general, and subjects are often patients too.Subject handling guidelines are intended to reduce the likelihood that lung nodules will be obscured by surrounding disease or image artifacts, which could alter quantitative measurements, and to promote consistency of image quality on serial scans. Intravenous Contrast is not used for CT lung cancer screening ADDIN EN.CITE <EndNote><Cite><Author>ACR-STR</Author><Year>2014</Year><RecNum>2159</RecNum><DisplayText>(26)</DisplayText><record><rec-number>2159</rec-number><foreign-keys><key app="EN" db-id="fvzx95zaxvdvakexsaapvr5cefv0sdsfad0d" timestamp="1441226238">2159</key></foreign-keys><ref-type name="Report">27</ref-type><contributors><authors><author>ACR-STR</author></authors></contributors><titles><title>ACR-STR practice parameter for the performance and reporting of lung cancer screening thoracic computed tomography (CT)</title></titles><dates><year>2014</year></dates><urls></urls></record></Cite></EndNote>(26). Because of the inherently high contrast between lung nodules and the surrounding parenchyma, contrast is unnecessary for nodule detection and quantification. Its use incurs additional cost, the potential for renal toxicity and adverse reactions, and may affect volume quantification PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA2PC9ZZWFyPjxSZWNO

dW0+MjE0NDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMjEsIDI3LCAyOCk8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE0NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDM5MjMzOTY2Ij4yMTQ0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5Hb28sIEouIE0uPC9hdXRob3I+PGF1dGhvcj5LaW0sIEsuIEcuPC9hdXRob3I+PGF1dGhv

cj5HaWVyYWRhLCBELiBTLjwvYXV0aG9yPjxhdXRob3I+Q2FzdHJvLCBNLjwvYXV0aG9yPjxhdXRo

b3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRy

ZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBTZW91bCBOYXRpb25hbCBVbml2ZXJzaXR5IENv

bGxlZ2Ugb2YgTWVkaWNpbmUsIGFuZCB0aGUgSW5zdGl0dXRlIG9mIFJhZGlhdGlvbiBNZWRpY2lu

ZSwgU05VTVJDLCBKb25nbm8tR3UsIFNlb3VsLCBLb3JlYS4gam1nb29AcGxhemEuc251LmFjLmty

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudHMgb2Yg

bHVuZyBub2R1bGVzIHdpdGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgY2hhbmdl

cyBpbiBsdW5nIHZvbHVtZTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5Lb3JlYW4gSiBSYWRpb2w8

L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPktvcmVhbiBqb3VybmFsIG9mIHJhZGlvbG9neTwv

YWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPktvcmVhbiBKIFJhZGlv

bDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjI0My04PC9wYWdlcz48dm9sdW1lPjc8

L3ZvbHVtZT48bnVtYmVyPjQ8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdv

cmQ+PGtleXdvcmQ+QXN0aG1hL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkJyb25jaGl0

aXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3Jk

Pkh1bWFuczwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBB

Z2VkPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRl

ZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA2PC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+T2N0LURlYzwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjEy

MjktNjkyOSAoUHJpbnQpJiN4RDsxMjI5LTY5MjkgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24t

bnVtPjE3MTQzMDI3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE3MTQzMDI3PC91cmw+PC9yZWxhdGVkLXVy

bHM+PC91cmxzPjxjdXN0b20yPjI2Njc2MTA8L2N1c3RvbTI+PC9yZWNvcmQ+PC9DaXRlPjxDaXRl

PjxBdXRob3I+UGV0a292c2thPC9BdXRob3I+PFllYXI+MjAwNzwvWWVhcj48UmVjTnVtPjIxNDI8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDI8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMTQzOTIzMzY5NCI+MjE0Mjwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYt

dHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxh

dXRob3JzPjxhdXRob3I+UGV0a292c2thLCBJLjwvYXV0aG9yPjxhdXRob3I+QnJvd24sIE0uIFMu

PC9hdXRob3I+PGF1dGhvcj5Hb2xkaW4sIEouIEcuPC9hdXRob3I+PGF1dGhvcj5LaW0sIEguIEou

PC9hdXRob3I+PGF1dGhvcj5NY05pdHQtR3JheSwgTS4gRi48L2F1dGhvcj48YXV0aG9yPkFidGlu

LCBGLiBHLjwvYXV0aG9yPjxhdXRob3I+R2h1cmFiaSwgUi4gSi48L2F1dGhvcj48YXV0aG9yPkFi

ZXJsZSwgRC4gUi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVz

cz5UaG9yYWNpYyBJbWFnaW5nIFJlc2VhcmNoIEdyb3VwLCBEZXBhcnRtZW50IG9mIFJhZGlvbG9n

aWNhbCBTY2llbmNlcywgRGF2aWQgR2VmZmVuIFNjaG9vbCBvZiBNZWRpY2luZSwgVW5pdmVyc2l0

eSBvZiBDYWxpZm9ybmlhIExvcyBBbmdlbGVzLCA5MjQgV2VzdHdvb2QgQmx2ZC4sIFN1aXRlIDY1

MCwgQm94IDk1NzMxOSwgTG9zIEFuZ2VsZXMsIENBIDkwMDk1LTczMTksIFVTQS4gaXBldGtvdnNr

YUBtZWRuZXQudWNsYS5lZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5UaGUgZWZmZWN0

IG9mIGx1bmcgdm9sdW1lIG9uIG5vZHVsZSBzaXplIG9uIENUPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkFjYWQgUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5BY2FkZW1pYyByYWRp

b2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkIFJh

ZGlvbDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxl

PkFjYWRlbWljIFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz40

NzYtODU8L3BhZ2VzPjx2b2x1bWU+MTQ8L3ZvbHVtZT48bnVtYmVyPjQ8L251bWJlcj48a2V5d29y

ZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkltYWdlIFByb2Nlc3NpbmcsIENv

bXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL3BhdGhvbG9n

eS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRz

PC9rZXl3b3JkPjxrZXl3b3JkPk5lb3BsYXNtIFN0YWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmVn

cmVzc2lvbiBBbmFseXNpczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVz

dWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlL3BhdGhvbG9n

eS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48

cHViLWRhdGVzPjxkYXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjEwNzYt

NjMzMiAoUHJpbnQpJiN4RDsxMDc2LTYzMzIgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVt

PjE3MzY4MjE4PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE3MzY4MjE4PC91cmw+PC9yZWxhdGVkLXVybHM+

PC91cmxzPjxjdXN0b20yPjI3NTIyOTY8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjEwMTYvai5hY3JhLjIwMDcuMDEuMDA4PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3Jl

Y29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5HaWV0ZW1hPC9BdXRob3I+PFllYXI+MjAwNzwvWWVh

cj48UmVjTnVtPjIxNDM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDM8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQzOTIzMzgwNSI+MjE0Mzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+R2lldGVtYSwgSC4gQS48L2F1dGhvcj48YXV0

aG9yPlNjaGFlZmVyLVByb2tvcCwgQy4gTS48L2F1dGhvcj48YXV0aG9yPk1hbGksIFcuIFAuPC9h

dXRob3I+PGF1dGhvcj5Hcm9lbmV3ZWdlbiwgRy48L2F1dGhvcj48YXV0aG9yPlByb2tvcCwgTS48

L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50

IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciwgSGVpZGVsYmVyZ2xhYW4g

MTAwLCAzNTg0IENYIFV0cmVjaHQsIHRoZSBOZXRoZXJsYW5kcy4gaC5naWV0ZW1hQHVtY3V0cmVj

aHQubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxlczogSW50

ZXJzY2FuIHZhcmlhYmlsaXR5IG9mIHNlbWlhdXRvbWF0ZWQgdm9sdW1lIG1lYXN1cmVtZW50cyB3

aXRoIG11bHRpc2VjdGlvbiBDVC0tIGluZmx1ZW5jZSBvZiBpbnNwaXJhdGlvbiBsZXZlbCwgbm9k

dWxlIHNpemUsIGFuZCBzZWdtZW50YXRpb24gcGVyZm9ybWFuY2U8L3RpdGxlPjxzZWNvbmRhcnkt

dGl0bGU+UmFkaW9sb2d5PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8L2Fs

dC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8

L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+ODg4LTk0PC9wYWdlcz48dm9sdW1l

PjI0NTwvdm9sdW1lPjxudW1iZXI+MzwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVy

PC9rZXl3b3JkPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbmhhbGF0aW9uPC9rZXl3

b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+UHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQ

dWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3Jk

PlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+

PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5EZWM8L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNTI3LTEzMTUgKEVsZWN0cm9uaWMpJiN4RDswMDMzLTg0MTkg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3OTIzNTA4PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3OTIzNTA4PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMTQ4L3JhZGlvbC4yNDUyMDYxMDU0PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48

L3JlY29yZD48L0NpdGU+PC9FbmROb3RlPgB=

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA2PC9ZZWFyPjxSZWNO

dW0+MjE0NDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMjEsIDI3LCAyOCk8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE0NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDM5MjMzOTY2Ij4yMTQ0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5Hb28sIEouIE0uPC9hdXRob3I+PGF1dGhvcj5LaW0sIEsuIEcuPC9hdXRob3I+PGF1dGhv

cj5HaWVyYWRhLCBELiBTLjwvYXV0aG9yPjxhdXRob3I+Q2FzdHJvLCBNLjwvYXV0aG9yPjxhdXRo

b3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRy

ZXNzPkRlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBTZW91bCBOYXRpb25hbCBVbml2ZXJzaXR5IENv

bGxlZ2Ugb2YgTWVkaWNpbmUsIGFuZCB0aGUgSW5zdGl0dXRlIG9mIFJhZGlhdGlvbiBNZWRpY2lu

ZSwgU05VTVJDLCBKb25nbm8tR3UsIFNlb3VsLCBLb3JlYS4gam1nb29AcGxhemEuc251LmFjLmty

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudHMgb2Yg

bHVuZyBub2R1bGVzIHdpdGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgY2hhbmdl

cyBpbiBsdW5nIHZvbHVtZTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5Lb3JlYW4gSiBSYWRpb2w8

L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPktvcmVhbiBqb3VybmFsIG9mIHJhZGlvbG9neTwv

YWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPktvcmVhbiBKIFJhZGlv

bDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjI0My04PC9wYWdlcz48dm9sdW1lPjc8

L3ZvbHVtZT48bnVtYmVyPjQ8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdv

cmQ+PGtleXdvcmQ+QXN0aG1hL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkJyb25jaGl0

aXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3Jk

Pkh1bWFuczwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBB

Z2VkPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRl

ZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA2PC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+T2N0LURlYzwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjEy

MjktNjkyOSAoUHJpbnQpJiN4RDsxMjI5LTY5MjkgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24t

bnVtPjE3MTQzMDI3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE3MTQzMDI3PC91cmw+PC9yZWxhdGVkLXVy

bHM+PC91cmxzPjxjdXN0b20yPjI2Njc2MTA8L2N1c3RvbTI+PC9yZWNvcmQ+PC9DaXRlPjxDaXRl

PjxBdXRob3I+UGV0a292c2thPC9BdXRob3I+PFllYXI+MjAwNzwvWWVhcj48UmVjTnVtPjIxNDI8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDI8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMTQzOTIzMzY5NCI+MjE0Mjwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYt

dHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxh

dXRob3JzPjxhdXRob3I+UGV0a292c2thLCBJLjwvYXV0aG9yPjxhdXRob3I+QnJvd24sIE0uIFMu

PC9hdXRob3I+PGF1dGhvcj5Hb2xkaW4sIEouIEcuPC9hdXRob3I+PGF1dGhvcj5LaW0sIEguIEou

PC9hdXRob3I+PGF1dGhvcj5NY05pdHQtR3JheSwgTS4gRi48L2F1dGhvcj48YXV0aG9yPkFidGlu

LCBGLiBHLjwvYXV0aG9yPjxhdXRob3I+R2h1cmFiaSwgUi4gSi48L2F1dGhvcj48YXV0aG9yPkFi

ZXJsZSwgRC4gUi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVz

cz5UaG9yYWNpYyBJbWFnaW5nIFJlc2VhcmNoIEdyb3VwLCBEZXBhcnRtZW50IG9mIFJhZGlvbG9n

aWNhbCBTY2llbmNlcywgRGF2aWQgR2VmZmVuIFNjaG9vbCBvZiBNZWRpY2luZSwgVW5pdmVyc2l0

eSBvZiBDYWxpZm9ybmlhIExvcyBBbmdlbGVzLCA5MjQgV2VzdHdvb2QgQmx2ZC4sIFN1aXRlIDY1

MCwgQm94IDk1NzMxOSwgTG9zIEFuZ2VsZXMsIENBIDkwMDk1LTczMTksIFVTQS4gaXBldGtvdnNr

YUBtZWRuZXQudWNsYS5lZHU8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5UaGUgZWZmZWN0

IG9mIGx1bmcgdm9sdW1lIG9uIG5vZHVsZSBzaXplIG9uIENUPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkFjYWQgUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5BY2FkZW1pYyByYWRp

b2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkIFJh

ZGlvbDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxl

PkFjYWRlbWljIFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz40

NzYtODU8L3BhZ2VzPjx2b2x1bWU+MTQ8L3ZvbHVtZT48bnVtYmVyPjQ8L251bWJlcj48a2V5d29y

ZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkltYWdlIFByb2Nlc3NpbmcsIENv

bXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL3BhdGhvbG9n

eS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRz

PC9rZXl3b3JkPjxrZXl3b3JkPk5lb3BsYXNtIFN0YWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmVn

cmVzc2lvbiBBbmFseXNpczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVz

dWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlL3BhdGhvbG9n

eS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48

cHViLWRhdGVzPjxkYXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjEwNzYt

NjMzMiAoUHJpbnQpJiN4RDsxMDc2LTYzMzIgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVt

PjE3MzY4MjE4PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE3MzY4MjE4PC91cmw+PC9yZWxhdGVkLXVybHM+

PC91cmxzPjxjdXN0b20yPjI3NTIyOTY8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjEwMTYvai5hY3JhLjIwMDcuMDEuMDA4PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3Jl

Y29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5HaWV0ZW1hPC9BdXRob3I+PFllYXI+MjAwNzwvWWVh

cj48UmVjTnVtPjIxNDM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDM8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQzOTIzMzgwNSI+MjE0Mzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+R2lldGVtYSwgSC4gQS48L2F1dGhvcj48YXV0

aG9yPlNjaGFlZmVyLVByb2tvcCwgQy4gTS48L2F1dGhvcj48YXV0aG9yPk1hbGksIFcuIFAuPC9h

dXRob3I+PGF1dGhvcj5Hcm9lbmV3ZWdlbiwgRy48L2F1dGhvcj48YXV0aG9yPlByb2tvcCwgTS48

L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50

IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciwgSGVpZGVsYmVyZ2xhYW4g

MTAwLCAzNTg0IENYIFV0cmVjaHQsIHRoZSBOZXRoZXJsYW5kcy4gaC5naWV0ZW1hQHVtY3V0cmVj

aHQubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxlczogSW50

ZXJzY2FuIHZhcmlhYmlsaXR5IG9mIHNlbWlhdXRvbWF0ZWQgdm9sdW1lIG1lYXN1cmVtZW50cyB3

aXRoIG11bHRpc2VjdGlvbiBDVC0tIGluZmx1ZW5jZSBvZiBpbnNwaXJhdGlvbiBsZXZlbCwgbm9k

dWxlIHNpemUsIGFuZCBzZWdtZW50YXRpb24gcGVyZm9ybWFuY2U8L3RpdGxlPjxzZWNvbmRhcnkt

dGl0bGU+UmFkaW9sb2d5PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8L2Fs

dC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8

L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+ODg4LTk0PC9wYWdlcz48dm9sdW1l

PjI0NTwvdm9sdW1lPjxudW1iZXI+MzwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwv

a2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVy

PC9rZXl3b3JkPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbmhhbGF0aW9uPC9rZXl3

b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+

PGtleXdvcmQ+UHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQ

dWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3Jk

PlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+

PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5EZWM8L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNTI3LTEzMTUgKEVsZWN0cm9uaWMpJiN4RDswMDMzLTg0MTkg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3OTIzNTA4PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3OTIzNTA4PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMTQ4L3JhZGlvbC4yNDUyMDYxMDU0PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48

L3JlY29yZD48L0NpdGU+PC9FbmROb3RlPgB=

ADDIN EN.CITE.DATA (21, 27, 28). If contrast must be used for a specific clinical indication (e.g. for characterization of the nodule, hilar nodes, or another abnormality) the Profile Claims are invalidated.After obtaining the localizer (scout) image, the technologist should evaluate the image for Artifact Sources such as external metallic objects that may produce artifacts that may alter the attenuation of lung nodules, and work with the subject to remove these devices. Internal metallic objects, such as pacemakers and spinal instrumentation, also may produce artifacts. Bismuth breast shields (used by some to reduce radiation exposure in the diagnostic CT setting) increase image noise. The impact of this imaging artifact on lung nodule volume quantification is unknown, but is likely to be magnified in the lung cancer screening setting due to the lower radiation dose used for screening. The effects of breast shields on image quality may vary depending on the types of shields and their positioning on the chest. The American Association of Physicists in Medicine currently does not endorse the use of breast shields, recommending the use of other dose reduction methods instead (). Thus, the use of breast shields is not compatible with the Profile Claims and is not recommended for lung cancer screening. However, organ dose modulation techniques that reduce dose in the anterior thorax may be used if implemented on all studies being compared.Consistent Subject Positioning is important, to reduce variation in x-ray beam hardening and scatter and in nodule orientation and position within the gantry. Positioning the chest (excluding the breasts) in the center of the gantry improves the consistency of relative attenuation values in different regions of the lung, and should reduce scan-to-scan variation in the behavior of dose modulation algorithms. The subject should be made comfortable, to reduce the potential for motion artifacts and to facilitate compliance with breath holding instructions.To achieve these goals, subjects should be positioned supine with arms overhead, in keeping with standard clinical practice. The sternum should be positioned over the midline of the table. The Table Height and Centering should be adjusted so that the midaxillary line is at the widest part of the gantry. The use of positioning wedges under the knees and/or head may be needed for patient comfort, or may help to better align the spine and shoulders on the table, and is optional. It is expected that local clinical practice and patient physical capabilities and limitations will influence patient positioning; an approach that promotes scan-to-scan consistency is essential.Scans should be performed during Breath Holding at maximal inspiration, to reduce motion artifacts and improve segmentation. Efforts should be made to obtain consistent, reproducible, maximal inspiratory lung volume on all scans. The use of live breathing instructions given at a pace easily tolerated by the patient is strongly recommended. However, depending on local practice preference and expertise, the use of prerecorded breathing instructions may provide acceptable results. Compliance with breathing instructions should be monitored by carefully observing the movement of the chest wall and abdomen to insure that the breathing cycle stays in phase with the verbal instructions. The scan should not be initiated until maximal inspiratory volume is reached and all movement has ceased. To promote patient compliance, performing a practice round of the breathing instructions prior to moving the patient into the scanner also is strongly recommended. This will make the subject familiar with the procedure, make the technologist familiar with the subject’s breathing rate, and allow the technologist to address any subject difficulties in following the instructions. Sample breathing instructions:“Take in a deep breath” (watch anterior chest rise)“Breathe all the way out” (watch anterior chest fall)“Now take a deep breath in…..in……in…..in all the way as far as you can”When chest and abdomen stop rising, say “Now hold your breath”. Initiate the scan when the chest and abdomen stop moving, allowing for the moment it takes for the diaphragm to relax after the glottis is closed.When scan is completed, say “You can breathe normally”3.6.2 SpecificationParameterActorRequirementIntravenous contrastAnalystShall not use images in which intravenous contrast was administered for quantitative nodule volumetry in lung cancer screening or follow-up of screen-detected nodules. RadiologistArtifact sourcesTechnologistShall remove or position potential sources of artifacts (specifically including breast shields, metal-containing clothing, EKG leads and other metal equipment) such that they will not degrade the reconstructed CT volumes.Subject PositioningTechnologistShall be consistent with baseline.Table Height & CenteringTechnologistShall adjust the table height for the mid-axillary plane to pass through the isocenter of the gantry. Shall be consistent with baseline.Breath holdingTechnologistShall instruct the subject in proper breath-hold and start image acquisition shortly after full inspiration, taking into account the lag time between full inspiration and diaphragmatic relaxation. Shall ensure that for each tumor the breath hold state is consistent with baseline3.7. Image Data AcquisitionThis activity involves the acquisition of image data for a subject at either time point. It includes details of data acquisition that are necessary to reliably meet the Profile Claim.3.7.1 DiscussionCT scans for nodule volumetric analysis can be performed on equipment that complies with the Specifications set out in this Profile. However, performing all CT scans for an individual subject must be done on the same platform (manufacturer, model and version) to reduce variation.Note that the requirement to "select a protocol that has been prepared and validated for this purpose" is not asking the tech to scan phantoms before every patient. Sites are required in section 3.4.2 to have validated the protocols that the tech will be using and conformance with the protocol depends on the tech selecting those protocols.Many scan parameters can have direct or indirect effects on identifying, segmenting and measuring tumors. To reduce this potential source of variance, all efforts should be made to have as many of the scan parameters as possible consistent with the baseline. Consistency with the baseline implies a need for a method to record and communicate the baseline settings and make that information available at the time and place that subsequent scans are performed. Although it is conceivable that the scanner could retrieve prior/baseline images and extract acquisition parameters to encourage consistency, such interoperability mechanisms are not defined or mandated here beyond requiring that certain fields be populated in the image header. Similarly, managing and forwarding the data files when multiple sites are involved may exceed the practical capabilities of the participating sites. Sites should be prepared to use manual methods instead.Image Header recordings of the key parameter values facilitate meeting and confirming the requirements to be consistent with the baseline scan.The goal of parameter consistency is to achieve consistent performance. Parameter consistency when using the same scanner make/model generally means using the same values. Parameter consistency when the baseline was acquired on a different make/model may require some “interpretation” to achieve consistent performance since the same values may produce different behavior on different models. See Section 3.4 "Protocol Design".Anatomic Coverage For screening purposes a baseline scan should include the entire volume of the lungs (apex through base), minimizing the volume scanned above and below the lungs to avoid unnecessary radiation exposure. For nodule measurement, the scan should include the full nodule and typically 5 to 10 mm of lung region above and below the nodule.The localizer (scout) image should be restricted as closely as possible to the anatomic limits of the thorax, using the minimum kV and mA needed to identify relevant anatomic landmarks. Inspecting the image also provides the opportunity to remove any external objects that may have been missed prior to positioning the subject on the table.In CT screening for lung cancer, the choice of scan acquisition parameters is strongly influenced by the desire to minimize radiation dose. The radiation dose delivered by volumetric CT scanning is indicated by the volume CT Dose Index (CTDIvol). The CTDIvol should be chosen to provide the lowest radiation dose that maintains acceptable image quality for detecting pulmonary nodules. Variability in CT nodule volumetry using low dose techniques is comparable to that of standard dose techniques PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxS

ZWNOdW0+MjE1MDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTQsIDE2LTE4LCAyOSk8L0Rpc3BsYXlU

ZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxr

ZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIg

dGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBl

IG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhv

cnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0uIEwuPC9h

dXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwvYXV0aG9y

PjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1dGhvcj48

YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgt

YWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlvbG9naWNo

ZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmljbyBBLiBH

ZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5IG5vZHVs

ZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVzcywgcmVj

b25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5IHJlc3Vs

dHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxh

bHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEgUmFkaW9s

b2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1lZGljYTwv

YWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1lPjExMzwv

dm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29y

ZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+

PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5QbGV1cmEv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2Vt

ZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxk

YXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRh

dGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTgzMzgx

MjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpbGxlbWluazwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+

PFJlY051bT4yMTUyPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUyPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQzOTgiPjIxNTI8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldpbGxlbWluaywgTS4gSi48L2F1dGhvcj48YXV0

aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9yPjxhdXRo

b3I+ZGUgS29ydCwgRi4gUC48L2F1dGhvcj48YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhv

cj48YXV0aG9yPnZhbiBPb2lqZW4sIFAuIE0uPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwv

YXV0aG9yPjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmli

dXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVXRyZWNodCBVbml2

ZXJzaXR5IE1lZGljYWwgQ2VudGVyLCBIUCBFMDEuMTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1

ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRzLiBtLndpbGxlbWlua0B1bWN1dHJlY2h0Lm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+U3lzdGVtYXRpYyBlcnJvciBpbiBsdW5nIG5v

ZHVsZSB2b2x1bWV0cnk6IGVmZmVjdCBvZiBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gdmVyc3Vz

IGZpbHRlcmVkIGJhY2sgcHJvamVjdGlvbiBhdCBkaWZmZXJlbnQgQ1QgcGFyYW1ldGVyczwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjQxLTY8L3BhZ2VzPjx2b2x1bWU+MTk5

PC92b2x1bWU+PG51bWJlcj42PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8

L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21z

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8

L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJw

cmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGh5LCBUaG9yYWNpYy8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzE2OTcxNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzE2OTcxNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTIuODcyNzwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2llbHB1dHo8L0F1dGhvcj48

WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1MzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE1MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NDU0Ij4y

MTUzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XaWVscHV0eiwgTS4g

Ty48L2F1dGhvcj48YXV0aG9yPkxlZGVybGluLCBNLjwvYXV0aG9yPjxhdXRob3I+V3JvYmxld3Nr

aSwgSi48L2F1dGhvcj48YXV0aG9yPkRpbmtlbCwgSi48L2F1dGhvcj48YXV0aG9yPkVpY2hpbmdl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjxhdXRob3I+S2F1Y3pv

ciwgSC4gVS48L2F1dGhvcj48YXV0aG9yPlB1ZGVyYmFjaCwgTS48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERpYWdub3N0aWMgYW5k

IEludGVydmVudGlvbmFsIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBIb3NwaXRhbCBvZiBIZWlkZWxi

ZXJnLCBJbSBOZXVlbmhlaW1lciBGZWxkIDExMCwgNjkxMjAgSGVpZGVsYmVyZywgR2VybWFueS4g

TWFyay53aWVscHVldHpAbWVkLnVuaS1oZWlkZWxiZXJnLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q1Qgdm9sdW1ldHJ5IG9mIGFydGlmaWNpYWwgcHVsbW9uYXJ5IG5vZHVsZXMgdXNp

bmcgYW4gZXggdml2byBsdW5nIHBoYW50b206IGluZmx1ZW5jZSBvZiBleHBvc3VyZSBwYXJhbWV0

ZXJzIGFuZCBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gb24gcmVwcm9kdWNpYmlsaXR5PC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkV1ciBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+RXVyb3BlYW4gam91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2Fs

PjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXJvcGVhbiBKb3VybmFsIG9mIFJhZGlvbG9n

eTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNTc3LTgzPC9wYWdlcz48dm9s

dW1lPjgyPC92b2x1bWU+PG51bWJlcj45PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPipBbGdv

cml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMs

IEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50LyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8

L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyppbnN0cnVtZW50YXRpb24vKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPlNlcDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE4NzItNzcyNyAoRWxl

Y3Ryb25pYykmI3hEOzA3MjAtMDQ4WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjM3

MjczNzY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM3MjczNzY8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMTYvai5lanJhZC4yMDEzLjA0LjAzNTwv

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q29l

bmVuPC9BdXRob3I+PFllYXI+MjAxMzwvWWVhcj48UmVjTnVtPjIxNjY8L1JlY051bT48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNjY8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTMwOTgxOSI+MjE2Njwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

Q29lbmVuLCBBLjwvYXV0aG9yPjxhdXRob3I+SG9uZGEsIE8uPC9hdXRob3I+PGF1dGhvcj52YW4g

ZGVyIEphZ3QsIEUuIEouPC9hdXRob3I+PGF1dGhvcj5Ub21peWFtYSwgTi48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgT3Nha2EgVW5pdmVyc2l0eSBHcmFkdWF0ZSBTY2hvb2wgb2YgTWVkaWNpbmUsIDItMiBZYW1h

ZGFva2EsIFN1aXRhIENpdHksIE9zYWthLCA1NjUtMDg3MSwgSmFwYW4sIGFkcmlhYW5jb2VuZW5A

Z21haWwuY29tLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNvbXB1dGVyLWFzc2lzdGVk

IHNvbGlkIGx1bmcgbm9kdWxlIDNEIHZvbHVtZXRyeSBvbiBDVDogaW5mbHVlbmNlIG9mIHNjYW4g

bW9kZSBhbmQgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uOiBhIENUIHBoYW50b20gc3R1ZHk8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+SnBuIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10

aXRsZT5KYXBhbmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxw

ZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkpwbiBKIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkph

cGFuZXNlIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBh

bmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2Vz

PjY3Ny04NDwvcGFnZXM+PHZvbHVtZT4zMTwvdm9sdW1lPjxudW1iZXI+MTA8L251bWJlcj48a2V5

d29yZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipJbWFnaW5nLCBUaHJlZS1E

aW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Np

c3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29y

ZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRz

PjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHVi

LWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg2Ny0xMDhYIChFbGVjdHJvbmljKSYjeEQ7MTg2Ny0xMDcx

IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzk1NTMxNzwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1l

ZC8yMzk1NTMxNzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+MTAuMTAwNy9zMTE2MDQtMDEzLTAyMzUtMzwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+

PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTU0PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU0PC9yZWMtbnVt

YmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNh

YXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQ1MjMiPjIxNTQ8L2tleT48L2Zv

cmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+

PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5C

YXJuaGFydCwgSC48L2F1dGhvcj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5S

b2JpbnMsIE0uPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9yPjxhdXRob3I+U2Ft

ZWksIEUuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVk

aWNhbCBQaHlzaWNzIEdyYWR1YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBO

b3J0aCBDYXJvbGluYSAyNzcwNSBhbmQgQ2FybCBFLiBSYXZpbiBBZHZhbmNlZCBJbWFnaW5nIExh

Ym9yYXRvcmllcywgRHVrZSBVbml2ZXJzaXR5LCBEdXJoYW0sIE5vcnRoIENhcm9saW5hIDI3NzA1

LjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlZvbHVtZXRyaWMgcXVhbnRpZmljYXRpb24g

b2YgbHVuZyBub2R1bGVzIGluIENUIHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIChBU2lS

IGFuZCBNQklSKTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5NZWQgUGh5czwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TWVkaWNhbCBwaHlzaWNzPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlv

ZGljYWw+PGZ1bGwtdGl0bGU+TWVkIFBoeXM8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdl

cz4xMTE5MDI8L3BhZ2VzPjx2b2x1bWU+NDA8L3ZvbHVtZT48bnVtYmVyPjExPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+QW50aHJvcG9tZXRy

eS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5n

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qcmFkaW90aGVyYXB5PC9rZXl3b3JkPjxrZXl3b3JkPk11bHRpcGxlIFB1bG1vbmFyeSBOb2R1

bGVzL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFw

aGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5SYWRpb21ldHJ5L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW90

aGVyYXB5IFBsYW5uaW5nLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5

d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TY2F0dGVy

aW5nLCBSYWRpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVz

Pjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+PC9wdWItZGF0ZXM+

PC9kYXRlcz48aXNibj4wMDk0LTI0MDUgKFByaW50KSYjeEQ7MDA5NC0yNDA1IChMaW5raW5nKTwv

aXNibj48YWNjZXNzaW9uLW51bT4yNDMyMDQzNTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRl

ZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMyMDQzNTwv

dXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTEx

OC8xLjQ4MjM0NjM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0Vu

ZE5vdGU+AG==

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5MYXJpY2k8L0F1dGhvcj48WWVhcj4yMDA4PC9ZZWFyPjxS

ZWNOdW0+MjE1MDwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTQsIDE2LTE4LCAyOSk8L0Rpc3BsYXlU

ZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxr

ZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIg

dGltZXN0YW1wPSIxNDQxMjI0MDU0Ij4yMTUwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBl

IG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhv

cnM+PGF1dGhvcj5MYXJpY2ksIEEuIFIuPC9hdXRob3I+PGF1dGhvcj5TdG9ydG8sIE0uIEwuPC9h

dXRob3I+PGF1dGhvcj5Ub3JnZSwgTS48L2F1dGhvcj48YXV0aG9yPk1lcmV1LCBNLjwvYXV0aG9y

PjxhdXRob3I+TW9saW5hcmksIEYuPC9hdXRob3I+PGF1dGhvcj5NYWdnaSwgRi48L2F1dGhvcj48

YXV0aG9yPkJvbm9tbywgTC48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgt

YWRkcmVzcz5EaXBhcnRpbWVudG8gZGkgQmlvaW1tYWdpbmkgZSBTY2llbnplIFJhZGlvbG9naWNo

ZSwgVW5pdmVyc2l0YSBDYXR0b2xpY2EgZGVsIFNhY3JvIEN1b3JlLCBQb2xpY2xpbmljbyBBLiBH

ZW1lbGxpLCBSb21hLCBJdGFseS4gYW5uYS5sYXJpY2lAcm0udW5pY2F0dC5pdDwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPkF1dG9tYXRlZCB2b2x1bWV0cnkgb2YgcHVsbW9uYXJ5IG5vZHVs

ZXMgb24gbXVsdGlkZXRlY3RvciBDVDogaW5mbHVlbmNlIG9mIHNsaWNlIHRoaWNrbmVzcywgcmVj

b25zdHJ1Y3Rpb24gYWxnb3JpdGhtIGFuZCB0dWJlIGN1cnJlbnQuIFByZWxpbWluYXJ5IHJlc3Vs

dHM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sIE1lZDwvc2Vjb25kYXJ5LXRpdGxlPjxh

bHQtdGl0bGU+TGEgUmFkaW9sb2dpYSBtZWRpY2E8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9k

aWNhbD48ZnVsbC10aXRsZT5SYWRpb2wgTWVkPC9mdWxsLXRpdGxlPjxhYmJyLTE+TGEgUmFkaW9s

b2dpYSBtZWRpY2E8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPlJhZGlvbCBNZWQ8L2Z1bGwtdGl0bGU+PGFiYnItMT5MYSBSYWRpb2xvZ2lhIG1lZGljYTwv

YWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI5LTQyPC9wYWdlcz48dm9sdW1lPjExMzwv

dm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29y

ZD48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+

PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZy9ibG9vZCBzdXBwbHkvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBEaXNlYXNlcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5QbGV1cmEv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2Vt

ZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+

U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5U

b21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxk

YXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+RmViPC9kYXRlPjwvcHViLWRh

dGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04MzYyIChQcmludCkmI3hEOzAwMzMtODM2MiAoTGlua2lu

Zyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTgzMzgxMjU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJl

bGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTgzMzgx

MjU8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEw

LjEwMDcvczExNTQ3LTAwOC0wMjMxLTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpbGxlbWluazwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+

PFJlY051bT4yMTUyPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTUyPC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQzOTgiPjIxNTI8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldpbGxlbWluaywgTS4gSi48L2F1dGhvcj48YXV0

aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9yPjxhdXRo

b3I+ZGUgS29ydCwgRi4gUC48L2F1dGhvcj48YXV0aG9yPlZsaWVnZW50aGFydCwgUi48L2F1dGhv

cj48YXV0aG9yPnZhbiBPb2lqZW4sIFAuIE0uPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwv

YXV0aG9yPjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmli

dXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVXRyZWNodCBVbml2

ZXJzaXR5IE1lZGljYWwgQ2VudGVyLCBIUCBFMDEuMTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1

ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRzLiBtLndpbGxlbWlua0B1bWN1dHJlY2h0Lm5s

PC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+U3lzdGVtYXRpYyBlcnJvciBpbiBsdW5nIG5v

ZHVsZSB2b2x1bWV0cnk6IGVmZmVjdCBvZiBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gdmVyc3Vz

IGZpbHRlcmVkIGJhY2sgcHJvamVjdGlvbiBhdCBkaWZmZXJlbnQgQ1QgcGFyYW1ldGVyczwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjQxLTY8L3BhZ2VzPjx2b2x1bWU+MTk5

PC92b2x1bWU+PG51bWJlcj42PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8

L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21z

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8

L2tleXdvcmQ+PGtleXdvcmQ+UGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+UmFk

aWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJw

cmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJh

ZGlvZ3JhcGh5LCBUaG9yYWNpYy8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RGVjPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzE2OTcxNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzE2OTcxNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTIuODcyNzwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2llbHB1dHo8L0F1dGhvcj48

WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1MzwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+

MjE1MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5

NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NDU0Ij4y

MTUzPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+

MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XaWVscHV0eiwgTS4g

Ty48L2F1dGhvcj48YXV0aG9yPkxlZGVybGluLCBNLjwvYXV0aG9yPjxhdXRob3I+V3JvYmxld3Nr

aSwgSi48L2F1dGhvcj48YXV0aG9yPkRpbmtlbCwgSi48L2F1dGhvcj48YXV0aG9yPkVpY2hpbmdl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjxhdXRob3I+S2F1Y3pv

ciwgSC4gVS48L2F1dGhvcj48YXV0aG9yPlB1ZGVyYmFjaCwgTS48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIERpYWdub3N0aWMgYW5k

IEludGVydmVudGlvbmFsIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBIb3NwaXRhbCBvZiBIZWlkZWxi

ZXJnLCBJbSBOZXVlbmhlaW1lciBGZWxkIDExMCwgNjkxMjAgSGVpZGVsYmVyZywgR2VybWFueS4g

TWFyay53aWVscHVldHpAbWVkLnVuaS1oZWlkZWxiZXJnLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Q1Qgdm9sdW1ldHJ5IG9mIGFydGlmaWNpYWwgcHVsbW9uYXJ5IG5vZHVsZXMgdXNp

bmcgYW4gZXggdml2byBsdW5nIHBoYW50b206IGluZmx1ZW5jZSBvZiBleHBvc3VyZSBwYXJhbWV0

ZXJzIGFuZCBpdGVyYXRpdmUgcmVjb25zdHJ1Y3Rpb24gb24gcmVwcm9kdWNpYmlsaXR5PC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkV1ciBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0

bGU+RXVyb3BlYW4gam91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2Fs

PjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXJvcGVhbiBKb3VybmFsIG9mIFJhZGlvbG9n

eTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNTc3LTgzPC9wYWdlcz48dm9s

dW1lPjgyPC92b2x1bWU+PG51bWJlcj45PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPipBbGdv

cml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMs

IEltYWdpbmc8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50LyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0

ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8

L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyppbnN0cnVtZW50YXRpb24vKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPlNlcDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE4NzItNzcyNyAoRWxl

Y3Ryb25pYykmI3hEOzA3MjAtMDQ4WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjM3

MjczNzY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM3MjczNzY8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMTYvai5lanJhZC4yMDEzLjA0LjAzNTwv

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q29l

bmVuPC9BdXRob3I+PFllYXI+MjAxMzwvWWVhcj48UmVjTnVtPjIxNjY8L1JlY051bT48cmVjb3Jk

PjxyZWMtbnVtYmVyPjIxNjY8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4i

IGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0i

MTQ0MTMwOTgxOSI+MjE2Njwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3Vy

bmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+

Q29lbmVuLCBBLjwvYXV0aG9yPjxhdXRob3I+SG9uZGEsIE8uPC9hdXRob3I+PGF1dGhvcj52YW4g

ZGVyIEphZ3QsIEUuIEouPC9hdXRob3I+PGF1dGhvcj5Ub21peWFtYSwgTi48L2F1dGhvcj48L2F1

dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9n

eSwgT3Nha2EgVW5pdmVyc2l0eSBHcmFkdWF0ZSBTY2hvb2wgb2YgTWVkaWNpbmUsIDItMiBZYW1h

ZGFva2EsIFN1aXRhIENpdHksIE9zYWthLCA1NjUtMDg3MSwgSmFwYW4sIGFkcmlhYW5jb2VuZW5A

Z21haWwuY29tLjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNvbXB1dGVyLWFzc2lzdGVk

IHNvbGlkIGx1bmcgbm9kdWxlIDNEIHZvbHVtZXRyeSBvbiBDVDogaW5mbHVlbmNlIG9mIHNjYW4g

bW9kZSBhbmQgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uOiBhIENUIHBoYW50b20gc3R1ZHk8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+SnBuIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10

aXRsZT5KYXBhbmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxw

ZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkpwbiBKIFJhZGlvbDwvZnVsbC10aXRsZT48YWJici0xPkph

cGFuZXNlIGpvdXJuYWwgb2YgcmFkaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBh

bmVzZSBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2Vz

PjY3Ny04NDwvcGFnZXM+PHZvbHVtZT4zMTwvdm9sdW1lPjxudW1iZXI+MTA8L251bWJlcj48a2V5

d29yZHM+PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipJbWFnaW5nLCBUaHJlZS1E

aW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD4qUGhhbnRvbXMsIEltYWdpbmc8L2tleXdvcmQ+

PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Np

c3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29y

ZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29y

ZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRz

PjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHVi

LWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg2Ny0xMDhYIChFbGVjdHJvbmljKSYjeEQ7MTg2Ny0xMDcx

IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzk1NTMxNzwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1l

ZC8yMzk1NTMxNzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+MTAuMTAwNy9zMTE2MDQtMDEzLTAyMzUtMzwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+

PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTU0PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTU0PC9yZWMtbnVt

YmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNh

YXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEyMjQ1MjMiPjIxNTQ8L2tleT48L2Zv

cmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+

PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5C

YXJuaGFydCwgSC48L2F1dGhvcj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5S

b2JpbnMsIE0uPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9yPjxhdXRob3I+U2Ft

ZWksIEUuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVk

aWNhbCBQaHlzaWNzIEdyYWR1YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBO

b3J0aCBDYXJvbGluYSAyNzcwNSBhbmQgQ2FybCBFLiBSYXZpbiBBZHZhbmNlZCBJbWFnaW5nIExh

Ym9yYXRvcmllcywgRHVrZSBVbml2ZXJzaXR5LCBEdXJoYW0sIE5vcnRoIENhcm9saW5hIDI3NzA1

LjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlZvbHVtZXRyaWMgcXVhbnRpZmljYXRpb24g

b2YgbHVuZyBub2R1bGVzIGluIENUIHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIChBU2lS

IGFuZCBNQklSKTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5NZWQgUGh5czwvc2Vjb25kYXJ5LXRp

dGxlPjxhbHQtdGl0bGU+TWVkaWNhbCBwaHlzaWNzPC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlv

ZGljYWw+PGZ1bGwtdGl0bGU+TWVkIFBoeXM8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdl

cz4xMTE5MDI8L3BhZ2VzPjx2b2x1bWU+NDA8L3ZvbHVtZT48bnVtYmVyPjExPC9udW1iZXI+PGtl

eXdvcmRzPjxrZXl3b3JkPkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+QW50aHJvcG9tZXRy

eS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5n

L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBo

eS8qcmFkaW90aGVyYXB5PC9rZXl3b3JkPjxrZXl3b3JkPk11bHRpcGxlIFB1bG1vbmFyeSBOb2R1

bGVzL3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFw

aGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5SYWRpb21ldHJ5L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW90

aGVyYXB5IFBsYW5uaW5nLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5

d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TY2F0dGVy

aW5nLCBSYWRpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVz

Pjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+PC9wdWItZGF0ZXM+

PC9kYXRlcz48aXNibj4wMDk0LTI0MDUgKFByaW50KSYjeEQ7MDA5NC0yNDA1IChMaW5raW5nKTwv

aXNibj48YWNjZXNzaW9uLW51bT4yNDMyMDQzNTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRl

ZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yNDMyMDQzNTwv

dXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTEx

OC8xLjQ4MjM0NjM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0Vu

ZE5vdGU+AG==

ADDIN EN.CITE.DATA (14, 16-18, 29). As a general guideline, CTDIvol ≤3 mGy should provide sufficient image quality for a person of standard size, defined by the International Commission on Radiation Protection (ICRP) as 5’7”/170 cm and 154 lbs/70 kg. The CTDIvol should be reduced for smaller individuals and may need to be increased for larger individuals, but should be kept constant for the same person at all time points. CTDIvol is determined by the interaction of multiple parameters, including the Tube Potential (kV), Tube Current (mA), tube Rotation Time, and Pitch. Settings for kV, mA, rotation time, and pitch may be varied as needed to achieve the desired CTDIvol. Pitch is chosen so as to allow completion of the scan in a single breath hold with adequate spatial resolution along the subject z-axis. It is recommended that pitch does not exceed 2.0 for CT acquisitions obtained with a single x-ray tube, or the equivalent for acquisitions with dual-source technology.3.7.2 Specification The Acquisition Device shall be capable of performing scans with all the parameters set as described in the following table. The Technologist shall set the scan acquisition parameters to achieve the requirements in the following table.ParameterActorRequirementDICOM TagAcquisition ProtocolTechnologist/RadiologistShall select a protocol that has been previously prepared and validated for this Profile (See section 3.4.2 "Protocol Design Specification").Scan Duration TechnologistShall perform the scan in a single breath hold. ConsistencyTechnologistShall ensure that follow-up scans use the same CT scanner model and acquisition protocol settings.3.8. Image Data ReconstructionThis activity involves the reconstruction of image data for a subject at either time point. It includes criteria and procedures related to producing images from the acquired data that are necessary to reliably meet the Profile Claim.3.8.1 DiscussionMany reconstruction parameters can have direct or indirect effects on identifying, segmenting, and measuring nodules. To reduce this source of variance, all efforts should be made to have as many of the parameters as possible on follow-up scans consistent with the baseline scan. Reconstruction Field of View interacts with image matrix size (512x512 for most reconstruction algorithms) to determine the reconstructed pixel size. Pixel size directly affects voxel size in the x-y plane. Smaller voxels are preferable to reduce partial volume effects that can blur the edges of nodules and reduce measurement accuracy and precision. Pixel size in each dimension is not the same as spatial resolution in each dimension, which depends on a number of additional factors including the section thickness and reconstruction kernel. Targeted reconstructions with a small field of view minimize partial volume effects, but have limited effect on the accuracy of nodule volumetry compared to a standard field of view that encompasses all of the lungs PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA1PC9ZZWFyPjxSZWNO

dW0+MTg5ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTEsIDEyKTwvRGlzcGxheVRleHQ+PHJlY29y

ZD48cmVjLW51bWJlcj4xODk4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjAiPjE4OTg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkdvbywgSi4g

TS48L2F1dGhvcj48YXV0aG9yPlRvbmdkZWUsIFQuPC9hdXRob3I+PGF1dGhvcj5Ub25nZGVlLCBS

LjwvYXV0aG9yPjxhdXRob3I+WWVvLCBLLjwvYXV0aG9yPjxhdXRob3I+SGlsZGVib2x0LCBDLiBG

LjwvYXV0aG9yPjxhdXRob3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1

dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5LCBX

YXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5nc2hpZ2h3

YXkgQmx2ZCwgU3QgTG91aXMsIE1PIDYzMTEwLCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48

dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudCBvZiBzeW50aGV0aWMgbHVuZyBub2R1bGVzIHdp

dGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgdmFyaW91cyBpbWFnZSByZWNvbnN0

cnVjdGlvbiBwYXJhbWV0ZXJzIGFuZCBzZWdtZW50YXRpb24gdGhyZXNob2xkcyBvbiBtZWFzdXJl

bWVudCBhY2N1cmFjeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFy

eS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44NTAtNjwvcGFnZXM+PHZvbHVtZT4yMzU8L3ZvbHVt

ZT48bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWNyeWxpYyBSZXNpbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3

b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVj

aWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBO

b2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5

LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVh

cj4yMDA1PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SnVuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0

ZXM+PGFjY2Vzc2lvbi1udW0+MTU5MTQ0Nzg8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9lbnRyZXovcXVlcnkuZmNnaT9j

bWQ9UmV0cmlldmUmYW1wO2RiPVB1Yk1lZCZhbXA7ZG9wdD1DaXRhdGlvbiZhbXA7bGlzdF91aWRz

PTE1OTE0NDc4IDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+PENp

dGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFllYXI+MjAwODwvWWVhcj48UmVjTnVtPjE4OTk8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1l

PSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxh

dXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRob3I+

PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9yPjxhdXRob3I+TWlsbGVyLCBKLiBWLjwvYXV0

aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBHLiBB

LjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1l

bnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZlcnNpdHkgb2YgU291dGggQ2Fyb2xpbmEsIDE2

OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiBy

YXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBu

b2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgb24gYXV0

b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxs

LXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04PC9w

YWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5

d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGluZWFyIE1vZGVsczwva2V5d29yZD48a2V5

d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3

b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0dWRp

ZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwg

Q29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJkczwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kvcmFk

aW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1l

dGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwODwveWVhcj48cHViLWRh

dGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24tbnVtPjE4

NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3

Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtkYj1Q

dWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xODQzMDg3NCA8L3VybD48L3Jl

bGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA1PC9ZZWFyPjxSZWNO

dW0+MTg5ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTEsIDEyKTwvRGlzcGxheVRleHQ+PHJlY29y

ZD48cmVjLW51bWJlcj4xODk4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVO

IiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9

IjAiPjE4OTg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkdvbywgSi4g

TS48L2F1dGhvcj48YXV0aG9yPlRvbmdkZWUsIFQuPC9hdXRob3I+PGF1dGhvcj5Ub25nZGVlLCBS

LjwvYXV0aG9yPjxhdXRob3I+WWVvLCBLLjwvYXV0aG9yPjxhdXRob3I+SGlsZGVib2x0LCBDLiBG

LjwvYXV0aG9yPjxhdXRob3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1

dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5LCBX

YXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5nc2hpZ2h3

YXkgQmx2ZCwgU3QgTG91aXMsIE1PIDYzMTEwLCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48

dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudCBvZiBzeW50aGV0aWMgbHVuZyBub2R1bGVzIHdp

dGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgdmFyaW91cyBpbWFnZSByZWNvbnN0

cnVjdGlvbiBwYXJhbWV0ZXJzIGFuZCBzZWdtZW50YXRpb24gdGhyZXNob2xkcyBvbiBtZWFzdXJl

bWVudCBhY2N1cmFjeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFy

eS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwt

dGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44NTAtNjwvcGFnZXM+PHZvbHVtZT4yMzU8L3ZvbHVt

ZT48bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWNyeWxpYyBSZXNpbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3

b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVj

aWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBO

b2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5

LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVh

cj4yMDA1PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SnVuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0

ZXM+PGFjY2Vzc2lvbi1udW0+MTU5MTQ0Nzg8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9lbnRyZXovcXVlcnkuZmNnaT9j

bWQ9UmV0cmlldmUmYW1wO2RiPVB1Yk1lZCZhbXA7ZG9wdD1DaXRhdGlvbiZhbXA7bGlzdF91aWRz

PTE1OTE0NDc4IDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+PENp

dGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFllYXI+MjAwODwvWWVhcj48UmVjTnVtPjE4OTk8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1l

PSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxh

dXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRob3I+

PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9yPjxhdXRob3I+TWlsbGVyLCBKLiBWLjwvYXV0

aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBHLiBB

LjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1l

bnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZlcnNpdHkgb2YgU291dGggQ2Fyb2xpbmEsIDE2

OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiBy

YXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFyeSBu

b2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgb24gYXV0

b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxs

LXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04PC9w

YWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5

d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGluZWFyIE1vZGVsczwva2V5d29yZD48a2V5

d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3

b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0dWRp

ZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwg

Q29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJkczwv

a2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kvcmFk

aW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1l

dGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwODwveWVhcj48cHViLWRh

dGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24tbnVtPjE4

NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3

Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtkYj1Q

dWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xODQzMDg3NCA8L3VybD48L3Jl

bGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjwvRW5kTm90ZT5=

ADDIN EN.CITE.DATA (11, 12). A reconstructed field of view set to the widest diameter of the lungs, and consistent with baseline, is sufficient to meet the Claims of this Profile. The Reconstructed Slice Thickness should be small relative to the size of the smallest nodules detected and followed by CT screening PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA1PC9ZZWFyPjxSZWNO

dW0+MTg5ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTEtMTMsIDMxKTwvRGlzcGxheVRleHQ+PHJl

Y29yZD48cmVjLW51bWJlcj4xODk4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9

IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3Rh

bXA9IjAiPjE4OTg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBB

cnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkdvbywg

Si4gTS48L2F1dGhvcj48YXV0aG9yPlRvbmdkZWUsIFQuPC9hdXRob3I+PGF1dGhvcj5Ub25nZGVl

LCBSLjwvYXV0aG9yPjxhdXRob3I+WWVvLCBLLjwvYXV0aG9yPjxhdXRob3I+SGlsZGVib2x0LCBD

LiBGLjwvYXV0aG9yPjxhdXRob3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRy

aWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5

LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5nc2hp

Z2h3YXkgQmx2ZCwgU3QgTG91aXMsIE1PIDYzMTEwLCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudCBvZiBzeW50aGV0aWMgbHVuZyBub2R1bGVz

IHdpdGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgdmFyaW91cyBpbWFnZSByZWNv

bnN0cnVjdGlvbiBwYXJhbWV0ZXJzIGFuZCBzZWdtZW50YXRpb24gdGhyZXNob2xkcyBvbiBtZWFz

dXJlbWVudCBhY2N1cmFjeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29u

ZGFyeS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1

bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44NTAtNjwvcGFnZXM+PHZvbHVtZT4yMzU8L3Zv

bHVtZT48bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWNyeWxpYyBSZXNpbnM8

L2tleXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1dGVyLUFzc2lzdGVkPC9r

ZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJv

ZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFy

eSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3Jh

cGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48

eWVhcj4yMDA1PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SnVuPC9kYXRlPjwvcHViLWRhdGVzPjwv

ZGF0ZXM+PGFjY2Vzc2lvbi1udW0+MTU5MTQ0Nzg8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0

ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9lbnRyZXovcXVlcnkuZmNn

aT9jbWQ9UmV0cmlldmUmYW1wO2RiPVB1Yk1lZCZhbXA7ZG9wdD1DaXRhdGlvbiZhbXA7bGlzdF91

aWRzPTE1OTE0NDc4IDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFllYXI+MjAwODwvWWVhcj48UmVjTnVtPjE4

OTk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRo

b3I+PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9yPjxhdXRob3I+TWlsbGVyLCBKLiBWLjwv

YXV0aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBH

LiBBLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZlcnNpdHkgb2YgU291dGggQ2Fyb2xpbmEs

IDE2OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNB

LiByYXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFy

eSBub2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgb24g

YXV0b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04

PC9wYWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48

a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGluZWFyIE1vZGVsczwva2V5d29yZD48

a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0

dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlv

biwgQ29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJk

czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQv

Km1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwODwveWVhcj48cHVi

LWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24tbnVt

PjE4NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtk

Yj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xODQzMDg3NCA8L3VybD48

L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+TmlldGVy

dDwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTY0PC9SZWNOdW0+PHJlY29yZD48

cmVjLW51bWJlcj4yMTY0PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBk

Yi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0

NDEyMjg3OTAiPjIxNjQ8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5h

bCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk5p

ZXRlcnQsIFAuIEouPC9hdXRob3I+PGF1dGhvcj5SYXZlbmVsLCBKLiBHLjwvYXV0aG9yPjxhdXRo

b3I+TGV1ZSwgVy4gTS48L2F1dGhvcj48YXV0aG9yPk1pbGxlciwgSi4gVi48L2F1dGhvcj48YXV0

aG9yPlRheWxvciwgSy4gSy48L2F1dGhvcj48YXV0aG9yPkdhcnJldHQtTWF5ZXIsIEUuIFMuPC9h

dXRob3I+PGF1dGhvcj5TaWx2ZXN0cmksIEcuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVkaWNhbCBVbml2ZXJzaXR5IG9mIFNvdXRoIENhcm9saW5h

LCBCaW9zdGF0aXN0aWNzIGFuZCBCaW9pbmZvcm1hdGljcywgMTM1IENhbm5vbiBTdCwgU3VpdGUg

MzAzLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiBuaWV0ZXJwakBtdXNjLmVkdTwvYXV0aC1h

ZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkltcHJlY2lzaW9uIGluIGF1dG9tYXRlZCB2b2x1bWUgbWVh

c3VyZW1lbnRzIG9mIHB1bG1vbmFyeSBub2R1bGVzIGFuZCBpdHMgZWZmZWN0IG9uIHRoZSBsZXZl

bCBvZiB1bmNlcnRhaW50eSBpbiB2b2x1bWUgZG91YmxpbmcgdGltZSBlc3RpbWF0aW9uPC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkNoZXN0PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5DaGVz

dDwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkNoZXN0PC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+Q2hlc3Q8L2Z1

bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU4MC03PC9wYWdlcz48dm9sdW1lPjEz

NTwvdm9sdW1lPjxudW1iZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5Db25maWRlbmNl

IEludGVydmFsczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGlu

ZWFyIE1vZGVsczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3Jh

ZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBhdHRlcm4gUmVjb2duaXRpb24sIEF1dG9tYXRl

ZDwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD4q

UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZDwva2V5

d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdv

cmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5

d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29y

ZD48a2V5d29yZD5UdW1vciBCdXJkZW48L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+

MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVz

Pjxpc2JuPjE5MzEtMzU0MyAoRWxlY3Ryb25pYykmI3hEOzAwMTItMzY5MiAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MTkxNDE1MjY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkxNDE1MjY8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEzNzgv

Y2hlc3QuMDgtMjA0MDwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxD

aXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+PFJlY051bT4yMTQ5PC9S

ZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTQ5PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+

PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBk

IiB0aW1lc3RhbXA9IjE0NDEyMjM5MzciPjIxNDk8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5

cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0

aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5CYXJuaGFydCwgSC48L2F1dGhv

cj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9y

PjxhdXRob3I+QW11cmFvLCBNLjwvYXV0aG9yPjxhdXRob3I+U2FtZWksIEUuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVkaWNhbCBQaHlzaWNzIEdyYWR1

YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOQyAyNzcwNSwgVVNBLjwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlF1YW50aXRhdGl2ZSBDVDogdGVjaG5pcXVlIGRlcGVu

ZGVuY2Ugb2Ygdm9sdW1lIGVzdGltYXRpb24gb24gcHVsbW9uYXJ5IG5vZHVsZXM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+UGh5cyBNZWQgQmlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+

UGh5c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJp

b2RpY2FsPjxmdWxsLXRpdGxlPlBoeXMgTWVkIEJpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5QaHlz

aWNzIGluIG1lZGljaW5lIGFuZCBiaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5QaHlzIE1lZCBCaW9sPC9mdWxsLXRpdGxlPjxhYmJyLTE+UGh5

c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBh

Z2VzPjEzMzUtNDg8L3BhZ2VzPjx2b2x1bWU+NTc8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48

a2V5d29yZHM+PGtleXdvcmQ+QW50aHJvcG9tZXRyeTwva2V5d29yZD48a2V5d29yZD5FcXVpcG1l

bnQgRGVzaWduPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFn

aW5nLCBUaHJlZS1EaW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD5MdW5nL3JhZGlvZ3JhcGh5

PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL2RpYWdub3Npcy9yYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Nb2RlbHMsIFN0YXRpc3RpY2FsPC9rZXl3b3JkPjxrZXl3b3JkPlBo

YW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlBvbHlwcm9weWxlbmVzL2NoZW1pc3Ry

eTwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48

a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9k

dWxlL2RpYWdub3Npcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VGhvcmF4L3BhdGhv

bG9neTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9k

czwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+

PGRhdGU+TWFyIDc8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xMzYxLTY1NjAgKEVs

ZWN0cm9uaWMpJiN4RDswMDMxLTkxNTUgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIy

MzQ5MjY1PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3

Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIyMzQ5MjY1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91

cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDg4LzAwMzEtOTE1NS81Ny81LzEzMzU8

L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5Hb288L0F1dGhvcj48WWVhcj4yMDA1PC9ZZWFyPjxSZWNO

dW0+MTg5ODwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTEtMTMsIDMxKTwvRGlzcGxheVRleHQ+PHJl

Y29yZD48cmVjLW51bWJlcj4xODk4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9

IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3Rh

bXA9IjAiPjE4OTg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBB

cnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkdvbywg

Si4gTS48L2F1dGhvcj48YXV0aG9yPlRvbmdkZWUsIFQuPC9hdXRob3I+PGF1dGhvcj5Ub25nZGVl

LCBSLjwvYXV0aG9yPjxhdXRob3I+WWVvLCBLLjwvYXV0aG9yPjxhdXRob3I+SGlsZGVib2x0LCBD

LiBGLjwvYXV0aG9yPjxhdXRob3I+QmFlLCBLLiBULjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRy

aWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1hbGxpbmNrcm9kdCBJbnN0aXR1dGUgb2YgUmFkaW9sb2d5

LCBXYXNoaW5ndG9uIFVuaXZlcnNpdHkgU2Nob29sIG9mIE1lZGljaW5lLCA1MTAgUyBLaW5nc2hp

Z2h3YXkgQmx2ZCwgU3QgTG91aXMsIE1PIDYzMTEwLCBVU0EuPC9hdXRoLWFkZHJlc3M+PHRpdGxl

cz48dGl0bGU+Vm9sdW1ldHJpYyBtZWFzdXJlbWVudCBvZiBzeW50aGV0aWMgbHVuZyBub2R1bGVz

IHdpdGggbXVsdGktZGV0ZWN0b3Igcm93IENUOiBlZmZlY3Qgb2YgdmFyaW91cyBpbWFnZSByZWNv

bnN0cnVjdGlvbiBwYXJhbWV0ZXJzIGFuZCBzZWdtZW50YXRpb24gdGhyZXNob2xkcyBvbiBtZWFz

dXJlbWVudCBhY2N1cmFjeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29u

ZGFyeS10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1

bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44NTAtNjwvcGFnZXM+PHZvbHVtZT4yMzU8L3Zv

bHVtZT48bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWNyeWxpYyBSZXNpbnM8

L2tleXdvcmQ+PGtleXdvcmQ+KkltYWdlIFByb2Nlc3NpbmcsIENvbXB1dGVyLUFzc2lzdGVkPC9r

ZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJv

ZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFy

eSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3Jh

cGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48

eWVhcj4yMDA1PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+SnVuPC9kYXRlPjwvcHViLWRhdGVzPjwv

ZGF0ZXM+PGFjY2Vzc2lvbi1udW0+MTU5MTQ0Nzg8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0

ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9lbnRyZXovcXVlcnkuZmNn

aT9jbWQ9UmV0cmlldmUmYW1wO2RiPVB1Yk1lZCZhbXA7ZG9wdD1DaXRhdGlvbiZhbXA7bGlzdF91

aWRzPTE1OTE0NDc4IDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48L3JlY29yZD48L0NpdGU+

PENpdGU+PEF1dGhvcj5SYXZlbmVsPC9BdXRob3I+PFllYXI+MjAwODwvWWVhcj48UmVjTnVtPjE4

OTk8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjE4OTk8L3JlYy1udW1iZXI+PGZvcmVpZ24t

a2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2Rz

ZmFkMGQiIHRpbWVzdGFtcD0iMCI+MTg5OTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+UmF2ZW5lbCwgSi4gRy48L2F1dGhvcj48YXV0aG9yPkxldWUsIFcuIE0uPC9hdXRo

b3I+PGF1dGhvcj5OaWV0ZXJ0LCBQLiBKLjwvYXV0aG9yPjxhdXRob3I+TWlsbGVyLCBKLiBWLjwv

YXV0aG9yPjxhdXRob3I+VGF5bG9yLCBLLiBLLjwvYXV0aG9yPjxhdXRob3I+U2lsdmVzdHJpLCBH

LiBBLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBNZWRpY2FsIFVuaXZlcnNpdHkgb2YgU291dGggQ2Fyb2xpbmEs

IDE2OSBBc2hsZXkgQXZlLCBQTyBCb3ggMjUwMzIyLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNB

LiByYXZlbmVqZ0BtdXNjLmVkdTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlB1bG1vbmFy

eSBub2R1bGUgdm9sdW1lOiBlZmZlY3RzIG9mIHJlY29uc3RydWN0aW9uIHBhcmFtZXRlcnMgb24g

YXV0b21hdGVkIG1lYXN1cmVtZW50cy0tYSBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjQwMC04

PC9wYWdlcz48dm9sdW1lPjI0Nzwvdm9sdW1lPjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48

a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGluZWFyIE1vZGVsczwva2V5d29yZD48

a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlByb3NwZWN0aXZlIFN0

dWRpZXM8L2tleXdvcmQ+PGtleXdvcmQ+KlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlv

biwgQ29tcHV0ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVmZXJlbmNlIFN0YW5kYXJk

czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypwYXRob2xvZ3kv

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQv

Km1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwODwveWVhcj48cHVi

LWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxhY2Nlc3Npb24tbnVt

PjE4NDMwODc0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvZW50cmV6L3F1ZXJ5LmZjZ2k/Y21kPVJldHJpZXZlJmFtcDtk

Yj1QdWJNZWQmYW1wO2RvcHQ9Q2l0YXRpb24mYW1wO2xpc3RfdWlkcz0xODQzMDg3NCA8L3VybD48

L3JlbGF0ZWQtdXJscz48L3VybHM+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+TmlldGVy

dDwvQXV0aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTY0PC9SZWNOdW0+PHJlY29yZD48

cmVjLW51bWJlcj4yMTY0PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBk

Yi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0

NDEyMjg3OTAiPjIxNjQ8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5h

bCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk5p

ZXRlcnQsIFAuIEouPC9hdXRob3I+PGF1dGhvcj5SYXZlbmVsLCBKLiBHLjwvYXV0aG9yPjxhdXRo

b3I+TGV1ZSwgVy4gTS48L2F1dGhvcj48YXV0aG9yPk1pbGxlciwgSi4gVi48L2F1dGhvcj48YXV0

aG9yPlRheWxvciwgSy4gSy48L2F1dGhvcj48YXV0aG9yPkdhcnJldHQtTWF5ZXIsIEUuIFMuPC9h

dXRob3I+PGF1dGhvcj5TaWx2ZXN0cmksIEcuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVkaWNhbCBVbml2ZXJzaXR5IG9mIFNvdXRoIENhcm9saW5h

LCBCaW9zdGF0aXN0aWNzIGFuZCBCaW9pbmZvcm1hdGljcywgMTM1IENhbm5vbiBTdCwgU3VpdGUg

MzAzLCBDaGFybGVzdG9uLCBTQyAyOTQyNSwgVVNBLiBuaWV0ZXJwakBtdXNjLmVkdTwvYXV0aC1h

ZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkltcHJlY2lzaW9uIGluIGF1dG9tYXRlZCB2b2x1bWUgbWVh

c3VyZW1lbnRzIG9mIHB1bG1vbmFyeSBub2R1bGVzIGFuZCBpdHMgZWZmZWN0IG9uIHRoZSBsZXZl

bCBvZiB1bmNlcnRhaW50eSBpbiB2b2x1bWUgZG91YmxpbmcgdGltZSBlc3RpbWF0aW9uPC90aXRs

ZT48c2Vjb25kYXJ5LXRpdGxlPkNoZXN0PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5DaGVz

dDwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkNoZXN0PC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+Q2hlc3Q8L2Z1

bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU4MC03PC9wYWdlcz48dm9sdW1lPjEz

NTwvdm9sdW1lPjxudW1iZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5Db25maWRlbmNl

IEludGVydmFsczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+TGlu

ZWFyIE1vZGVsczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcGF0aG9sb2d5L3Jh

ZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBhdHRlcm4gUmVjb2duaXRpb24sIEF1dG9tYXRl

ZDwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD4q

UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZDwva2V5

d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdv

cmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5

d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5d29y

ZD48a2V5d29yZD5UdW1vciBCdXJkZW48L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+

MjAwOTwveWVhcj48cHViLWRhdGVzPjxkYXRlPkp1bjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVz

Pjxpc2JuPjE5MzEtMzU0MyAoRWxlY3Ryb25pYykmI3hEOzAwMTItMzY5MiAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MTkxNDE1MjY8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTkxNDE1MjY8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEzNzgv

Y2hlc3QuMDgtMjA0MDwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxD

aXRlPjxBdXRob3I+Q2hlbjwvQXV0aG9yPjxZZWFyPjIwMTI8L1llYXI+PFJlY051bT4yMTQ5PC9S

ZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTQ5PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+

PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBk

IiB0aW1lc3RhbXA9IjE0NDEyMjM5MzciPjIxNDk8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5

cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0

aG9ycz48YXV0aG9yPkNoZW4sIEIuPC9hdXRob3I+PGF1dGhvcj5CYXJuaGFydCwgSC48L2F1dGhv

cj48YXV0aG9yPlJpY2hhcmQsIFMuPC9hdXRob3I+PGF1dGhvcj5Db2xzaGVyLCBKLjwvYXV0aG9y

PjxhdXRob3I+QW11cmFvLCBNLjwvYXV0aG9yPjxhdXRob3I+U2FtZWksIEUuPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+TWVkaWNhbCBQaHlzaWNzIEdyYWR1

YXRlIFByb2dyYW0sIER1a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOQyAyNzcwNSwgVVNBLjwvYXV0

aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPlF1YW50aXRhdGl2ZSBDVDogdGVjaG5pcXVlIGRlcGVu

ZGVuY2Ugb2Ygdm9sdW1lIGVzdGltYXRpb24gb24gcHVsbW9uYXJ5IG5vZHVsZXM8L3RpdGxlPjxz

ZWNvbmRhcnktdGl0bGU+UGh5cyBNZWQgQmlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+

UGh5c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJp

b2RpY2FsPjxmdWxsLXRpdGxlPlBoeXMgTWVkIEJpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5QaHlz

aWNzIGluIG1lZGljaW5lIGFuZCBiaW9sb2d5PC9hYmJyLTE+PC9wZXJpb2RpY2FsPjxhbHQtcGVy

aW9kaWNhbD48ZnVsbC10aXRsZT5QaHlzIE1lZCBCaW9sPC9mdWxsLXRpdGxlPjxhYmJyLTE+UGh5

c2ljcyBpbiBtZWRpY2luZSBhbmQgYmlvbG9neTwvYWJici0xPjwvYWx0LXBlcmlvZGljYWw+PHBh

Z2VzPjEzMzUtNDg8L3BhZ2VzPjx2b2x1bWU+NTc8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48

a2V5d29yZHM+PGtleXdvcmQ+QW50aHJvcG9tZXRyeTwva2V5d29yZD48a2V5d29yZD5FcXVpcG1l

bnQgRGVzaWduPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFn

aW5nLCBUaHJlZS1EaW1lbnNpb25hbDwva2V5d29yZD48a2V5d29yZD5MdW5nL3JhZGlvZ3JhcGh5

PC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zL2RpYWdub3Npcy9yYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5Nb2RlbHMsIFN0YXRpc3RpY2FsPC9rZXl3b3JkPjxrZXl3b3JkPlBo

YW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlBvbHlwcm9weWxlbmVzL2NoZW1pc3Ry

eTwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48

a2V5d29yZD5Tb2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9k

dWxlL2RpYWdub3Npcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VGhvcmF4L3BhdGhv

bG9neTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9k

czwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEyPC95ZWFyPjxwdWItZGF0ZXM+

PGRhdGU+TWFyIDc8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xMzYxLTY1NjAgKEVs

ZWN0cm9uaWMpJiN4RDswMDMxLTkxNTUgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIy

MzQ5MjY1PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3

Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIyMzQ5MjY1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91

cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMDg4LzAwMzEtOTE1NS81Ny81LzEzMzU8

L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE.DATA (11-13, 31). The Reconstruction Interval should be either contiguous or overlapping (i.e. with an interval that is less than the reconstructed slice thickness). Either method will be consistent with the Profile Claims, though overlap of 50% may provide better accuracy and precision compared to contiguous slice reconstruction PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5HYXZyaWVsaWRlczwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTY1PC9SZWNOdW0+PERpc3BsYXlUZXh0PigzMik8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE2NTwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDQxMzAxNDMwIj4yMTY1PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5HYXZyaWVsaWRlcywgTS4gQS48L2F1dGhvcj48YXV0aG9yPlplbmcsIFIuPC9hdXRob3I+

PGF1dGhvcj5NeWVycywgSy4gSi48L2F1dGhvcj48YXV0aG9yPlNhaGluZXIsIEIuPC9hdXRob3I+

PGF1dGhvcj5QZXRyaWNrLCBOLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0

aC1hZGRyZXNzPkRpdmlzaW9uIG9mIEltYWdpbmcgYW5kIEFwcGxpZWQgTWF0aGVtYXRpY3MsIE9m

ZmljZSBvZiBTY2llbmNlIGFuZCBFbmdpbmVlcmluZyBMYWJvcmF0b3JpZXMsIENlbnRlciBmb3Ig

RGV2aWNlcyBhbmQgUmFkaW9sb2dpY2FsIEhlYWx0aCwgVVMgRm9vZCBhbmQgRHJ1ZyBBZG1pbmlz

dHJhdGlvbiwgMTA5MDMgTmV3IEhhbXBzaGlyZSBBdmVudWUsIEJ1aWxkaW5nIDYyLCBSb29tIDQx

MTQsIFNpbHZlciBTcHJpbmcsIE1EIDIwOTkzLCBVU0EuIG1hcmlvcy5nYXZyaWVsaWRlc0BmZGEu

aGhzLmdvdjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkJlbmVmaXQgb2Ygb3ZlcmxhcHBp

bmcgcmVjb25zdHJ1Y3Rpb24gZm9yIGltcHJvdmluZyB0aGUgcXVhbnRpdGF0aXZlIGFzc2Vzc21l

bnQgb2YgQ1QgbHVuZyBub2R1bGUgdm9sdW1lPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkFjYWQg

UmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5BY2FkZW1pYyByYWRpb2xvZ3k8L2Fs

dC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkIFJhZGlvbDwvZnVs

bC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjYWRlbWlj

IFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNzMtODA8L3Bh

Z2VzPjx2b2x1bWU+MjA8L3ZvbHVtZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdv

cmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+THVu

ZyBOZW9wbGFzbXMvKnBhdGhvbG9neS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QYXR0

ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5QaGFu

dG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgRW5oYW5j

ZW1lbnQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVy

cHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

ZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBh

bmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVs

ZS8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlN1YnRyYWN0aW9uIFRl

Y2huaXF1ZTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC9pbnN0

cnVtZW50YXRpb24vKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlR1bW9yIEJ1cmRlbjwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RmViPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg3OC00MDQ2IChFbGVjdHJvbmlj

KSYjeEQ7MTA3Ni02MzMyIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzA4NTQwODwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzA4NTQwODwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAxNi9qLmFjcmEuMjAxMi4wOC4wMTQ8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5HYXZyaWVsaWRlczwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTY1PC9SZWNOdW0+PERpc3BsYXlUZXh0PigzMik8L0Rpc3BsYXlUZXh0Pjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjE2NTwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDQxMzAxNDMwIj4yMTY1PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5HYXZyaWVsaWRlcywgTS4gQS48L2F1dGhvcj48YXV0aG9yPlplbmcsIFIuPC9hdXRob3I+

PGF1dGhvcj5NeWVycywgSy4gSi48L2F1dGhvcj48YXV0aG9yPlNhaGluZXIsIEIuPC9hdXRob3I+

PGF1dGhvcj5QZXRyaWNrLCBOLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0

aC1hZGRyZXNzPkRpdmlzaW9uIG9mIEltYWdpbmcgYW5kIEFwcGxpZWQgTWF0aGVtYXRpY3MsIE9m

ZmljZSBvZiBTY2llbmNlIGFuZCBFbmdpbmVlcmluZyBMYWJvcmF0b3JpZXMsIENlbnRlciBmb3Ig

RGV2aWNlcyBhbmQgUmFkaW9sb2dpY2FsIEhlYWx0aCwgVVMgRm9vZCBhbmQgRHJ1ZyBBZG1pbmlz

dHJhdGlvbiwgMTA5MDMgTmV3IEhhbXBzaGlyZSBBdmVudWUsIEJ1aWxkaW5nIDYyLCBSb29tIDQx

MTQsIFNpbHZlciBTcHJpbmcsIE1EIDIwOTkzLCBVU0EuIG1hcmlvcy5nYXZyaWVsaWRlc0BmZGEu

aGhzLmdvdjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkJlbmVmaXQgb2Ygb3ZlcmxhcHBp

bmcgcmVjb25zdHJ1Y3Rpb24gZm9yIGltcHJvdmluZyB0aGUgcXVhbnRpdGF0aXZlIGFzc2Vzc21l

bnQgb2YgQ1QgbHVuZyBub2R1bGUgdm9sdW1lPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkFjYWQg

UmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5BY2FkZW1pYyByYWRpb2xvZ3k8L2Fs

dC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2FkIFJhZGlvbDwvZnVs

bC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjYWRlbWlj

IFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4xNzMtODA8L3Bh

Z2VzPjx2b2x1bWU+MjA8L3ZvbHVtZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdv

cmQ+QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

SW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+THVu

ZyBOZW9wbGFzbXMvKnBhdGhvbG9neS9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QYXR0

ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5QaGFu

dG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgRW5oYW5j

ZW1lbnQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVy

cHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5S

ZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBh

bmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVs

ZS8qcGF0aG9sb2d5L3JhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlN1YnRyYWN0aW9uIFRl

Y2huaXF1ZTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC9pbnN0

cnVtZW50YXRpb24vKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlR1bW9yIEJ1cmRlbjwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

RmViPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTg3OC00MDQ2IChFbGVjdHJvbmlj

KSYjeEQ7MTA3Ni02MzMyIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMzA4NTQwODwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMzA4NTQwODwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAxNi9qLmFjcmEuMjAxMi4wOC4wMTQ8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE.DATA (32). Reconstructing datasets with overlap will increase the number of images and may slow down throughput, increase reading time, and increase storage requirements, but has NO effect on radiation exposure. A reconstruction interval that results in gaps between slices is unacceptable as it may “truncate” the spatial extent of the nodule, degrade the identification of nodule boundaries, and confound the precision of measurement for total nodule volumes. The Reconstruction Algorithm Type most commonly used for CT has been filtered back projection. More recently introduced methods of iterative reconstruction can provide reduced image noise and/or radiation exposure ADDIN EN.CITE <EndNote><Cite><Author>Willemink</Author><Year>2013</Year><RecNum>2161</RecNum><DisplayText>(33)</DisplayText><record><rec-number>2161</rec-number><foreign-keys><key app="EN" db-id="fvzx95zaxvdvakexsaapvr5cefv0sdsfad0d" timestamp="1441227426">2161</key></foreign-keys><ref-type name="Journal Article">17</ref-type><contributors><authors><author>Willemink, M. J.</author><author>de Jong, P. A.</author><author>Leiner, T.</author><author>de Heer, L. M.</author><author>Nievelstein, R. A.</author><author>Budde, R. P.</author><author>Schilham, A. M.</author></authors></contributors><auth-address>Department of Radiology, Utrecht University Medical Center, PO Box 85500, E01.132, 3508 GA, Utrecht, The Netherlands. m.willemink@umcutrecht.nl</auth-address><titles><title>Iterative reconstruction techniques for computed tomography Part 1: technical principles</title><secondary-title>Eur Radiol</secondary-title><alt-title>European radiology</alt-title></titles><periodical><full-title>Eur Radiol</full-title></periodical><pages>1623-31</pages><volume>23</volume><number>6</number><keywords><keyword>Algorithms</keyword><keyword>Artifacts</keyword><keyword>Humans</keyword><keyword>Image Processing, Computer-Assisted/*methods</keyword><keyword>Imaging, Three-Dimensional</keyword><keyword>Phantoms, Imaging</keyword><keyword>Radiation Dosage</keyword><keyword>Radiographic Image Interpretation, Computer-Assisted/*methods</keyword><keyword>Radiology/methods</keyword><keyword>Reproducibility of Results</keyword><keyword>Tomography, X-Ray Computed/*methods</keyword></keywords><dates><year>2013</year><pub-dates><date>Jun</date></pub-dates></dates><isbn>1432-1084 (Electronic)&#xD;0938-7994 (Linking)</isbn><accession-num>23314600</accession-num><urls><related-urls><url>;(33). Studies have indicated that iterative methods are at least comparable to filtered back projection for CT volumetry PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5XaWxsZW1pbms8L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFy

PjxSZWNOdW0+MjE1MjwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTYtMTgsIDI5LCAzNCk8L0Rpc3Bs

YXlUZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MjwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlz

PjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQw

ZCIgdGltZXN0YW1wPSIxNDQxMjI0Mzk4Ij4yMTUyPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10

eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1

dGhvcnM+PGF1dGhvcj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5MZWluZXIsIFQu

PC9hdXRob3I+PGF1dGhvcj5CdWRkZSwgUi4gUC48L2F1dGhvcj48YXV0aG9yPmRlIEtvcnQsIEYu

IFAuPC9hdXRob3I+PGF1dGhvcj5WbGllZ2VudGhhcnQsIFIuPC9hdXRob3I+PGF1dGhvcj52YW4g

T29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48YXV0aG9y

PmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFk

ZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFV0cmVjaHQgVW5pdmVyc2l0eSBNZWRpY2Fs

IENlbnRlciwgSFAgRTAxLjEzMiwgSGVpZGVsYmVyZ2xhYW4gMTAwLCAzNTg0IENYIFV0cmVjaHQs

IFRoZSBOZXRoZXJsYW5kcy4gbS53aWxsZW1pbmtAdW1jdXRyZWNodC5ubDwvYXV0aC1hZGRyZXNz

Pjx0aXRsZXM+PHRpdGxlPlN5c3RlbWF0aWMgZXJyb3IgaW4gbHVuZyBub2R1bGUgdm9sdW1ldHJ5

OiBlZmZlY3Qgb2YgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIHZlcnN1cyBmaWx0ZXJlZCBiYWNr

IHByb2plY3Rpb24gYXQgZGlmZmVyZW50IENUIHBhcmFtZXRlcnM8L3RpdGxlPjxzZWNvbmRhcnkt

dGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpS

LiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48

cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwv

cGVyaW9kaWNhbD48cGFnZXM+MTI0MS02PC9wYWdlcz48dm9sdW1lPjE5OTwvdm9sdW1lPjxudW1i

ZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3JkPjxrZXl3

b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8

L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21w

dXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoeSwgVGhv

cmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jk

cz48ZGF0ZXM+PHllYXI+MjAxMjwveWVhcj48cHViLWRhdGVzPjxkYXRlPkRlYzwvZGF0ZT48L3B1

Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAz

WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjMxNjk3MTQ8L2FjY2Vzc2lvbi1udW0+

PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJt

ZWQvMjMxNjk3MTQ8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjEwLjIyMTQvQUpSLjEyLjg3Mjc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpZWxwdXR6PC9BdXRob3I+PFllYXI+MjAxMzwvWWVh

cj48UmVjTnVtPjIxNTM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTM8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNDQ1NCI+MjE1Mzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+V2llbHB1dHosIE0uIE8uPC9hdXRob3I+PGF1

dGhvcj5MZWRlcmxpbiwgTS48L2F1dGhvcj48YXV0aG9yPldyb2JsZXdza2ksIEouPC9hdXRob3I+

PGF1dGhvcj5EaW5rZWwsIEouPC9hdXRob3I+PGF1dGhvcj5FaWNoaW5nZXIsIE0uPC9hdXRob3I+

PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhvcj48YXV0aG9yPkthdWN6b3IsIEguIFUuPC9hdXRo

b3I+PGF1dGhvcj5QdWRlcmJhY2gsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3Jz

PjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9zdGljIGFuZCBJbnRlcnZlbnRpb25h

bCBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgb2YgSGVpZGVsYmVyZywgSW0gTmV1ZW5o

ZWltZXIgRmVsZCAxMTAsIDY5MTIwIEhlaWRlbGJlcmcsIEdlcm1hbnkuIE1hcmsud2llbHB1ZXR6

QG1lZC51bmktaGVpZGVsYmVyZy5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNUIHZv

bHVtZXRyeSBvZiBhcnRpZmljaWFsIHB1bG1vbmFyeSBub2R1bGVzIHVzaW5nIGFuIGV4IHZpdm8g

bHVuZyBwaGFudG9tOiBpbmZsdWVuY2Ugb2YgZXhwb3N1cmUgcGFyYW1ldGVycyBhbmQgaXRlcmF0

aXZlIHJlY29uc3RydWN0aW9uIG9uIHJlcHJvZHVjaWJpbGl0eTwvdGl0bGU+PHNlY29uZGFyeS10

aXRsZT5FdXIgSiBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIGpv

dXJuYWwgb2YgcmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwt

dGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGlj

YWw+PGZ1bGwtdGl0bGU+RXVyb3BlYW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+

PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU3Ny04MzwvcGFnZXM+PHZvbHVtZT44Mjwvdm9sdW1l

PjxudW1iZXI+OTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29y

ZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5z

aW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3Jh

cGhpYyBJbWFnZSBFbmhhbmNlbWVudC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dy

YXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9r

ZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3

b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFy

eSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3Jh

cGh5LCBYLVJheSBDb21wdXRlZC8qaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3b3JkPjwv

a2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5TZXA8L2Rh

dGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODcyLTc3MjcgKEVsZWN0cm9uaWMpJiN4RDsw

NzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNzI3Mzc2PC9hY2Nlc3Np

b24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5n

b3YvcHVibWVkLzIzNzI3Mzc2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmlj

LXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAxMy4wNC4wMzU8L2VsZWN0cm9uaWMtcmVz

b3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNvZW5lbjwvQXV0aG9yPjxZ

ZWFyPjIwMTM8L1llYXI+PFJlY051bT4yMTY2PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4y

MTY2PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1

emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMDk4MTkiPjIx

NjY8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4x

NzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNvZW5lbiwgQS48L2F1

dGhvcj48YXV0aG9yPkhvbmRhLCBPLjwvYXV0aG9yPjxhdXRob3I+dmFuIGRlciBKYWd0LCBFLiBK

LjwvYXV0aG9yPjxhdXRob3I+VG9taXlhbWEsIE4uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE9zYWthIFVuaXZl

cnNpdHkgR3JhZHVhdGUgU2Nob29sIG9mIE1lZGljaW5lLCAyLTIgWWFtYWRhb2thLCBTdWl0YSBD

aXR5LCBPc2FrYSwgNTY1LTA4NzEsIEphcGFuLCBhZHJpYWFuY29lbmVuQGdtYWlsLmNvbS48L2F1

dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Db21wdXRlci1hc3Npc3RlZCBzb2xpZCBsdW5nIG5v

ZHVsZSAzRCB2b2x1bWV0cnkgb24gQ1Q6IGluZmx1ZW5jZSBvZiBzY2FuIG1vZGUgYW5kIGl0ZXJh

dGl2ZSByZWNvbnN0cnVjdGlvbjogYSBDVCBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPkpwbiBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+SmFwYW5lc2Ug

am91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVs

bC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBhbmVzZSBqb3VybmFs

IG9mIHJhZGlvbG9neTwvYWJici0xPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwt

dGl0bGU+SnBuIEogUmFkaW9sPC9mdWxsLXRpdGxlPjxhYmJyLTE+SmFwYW5lc2Ugam91cm5hbCBv

ZiByYWRpb2xvZ3k8L2FiYnItMT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz42NzctODQ8L3BhZ2Vz

Pjx2b2x1bWU+MzE8L3ZvbHVtZT48bnVtYmVyPjEwPC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3Jk

Pkh1bWFuczwva2V5d29yZD48a2V5d29yZD4qSW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tl

eXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlv

Z3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8

L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVs

bW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwg

WC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+

MjAxMzwveWVhcj48cHViLWRhdGVzPjxkYXRlPk9jdDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVz

Pjxpc2JuPjE4NjctMTA4WCAoRWxlY3Ryb25pYykmI3hEOzE4NjctMTA3MSAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MjM5NTUzMTc8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM5NTUzMTc8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMDcv

czExNjA0LTAxMy0wMjM1LTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0

ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1

NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1r

ZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNm

YWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NTIzIj4yMTU0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJl

Zi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+

PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFybmhhcnQsIEguPC9h

dXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwvYXV0aG9yPjxhdXRob3I+Um9iaW5zLCBNLjwvYXV0

aG9yPjxhdXRob3I+Q29sc2hlciwgSi48L2F1dGhvcj48YXV0aG9yPlNhbWVpLCBFLjwvYXV0aG9y

PjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1lZGljYWwgUGh5c2ljcyBH

cmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZlcnNpdHksIER1cmhhbSwgTm9ydGggQ2Fyb2xpbmEg

Mjc3MDUgYW5kIENhcmwgRS4gUmF2aW4gQWR2YW5jZWQgSW1hZ2luZyBMYWJvcmF0b3JpZXMsIER1

a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOb3J0aCBDYXJvbGluYSAyNzcwNS48L2F1dGgtYWRkcmVz

cz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmljIHF1YW50aWZpY2F0aW9uIG9mIGx1bmcgbm9kdWxl

cyBpbiBDVCB3aXRoIGl0ZXJhdGl2ZSByZWNvbnN0cnVjdGlvbiAoQVNpUiBhbmQgTUJJUik8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+TWVkIFBoeXM8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

Pk1lZGljYWwgcGh5c2ljczwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPk1lZCBQaHlzPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTExOTAyPC9wYWdl

cz48dm9sdW1lPjQwPC92b2x1bWU+PG51bWJlcj4xMTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29y

ZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkFudGhyb3BvbWV0cnkvbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9yYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHkvKnJhZGlvdGhlcmFw

eTwva2V5d29yZD48a2V5d29yZD5NdWx0aXBsZSBQdWxtb25hcnkgTm9kdWxlcy9yYWRpb2dyYXBo

eTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5S

YWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRl

cnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+

UmFkaW9tZXRyeS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvdGhlcmFweSBQbGFubmlu

ZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNp

YmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2NhdHRlcmluZywgUmFkaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5

LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MDA5NC0yNDA1IChQcmludCkmI3hEOzAwOTQtMjQwNSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lv

bi1udW0+MjQzMjA0MzU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0

dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjQzMjA0MzU8L3VybD48L3JlbGF0ZWQt

dXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExMTgvMS40ODIzNDYzPC9l

bGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5XaWxs

ZW1pbms8L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE2NzwvUmVjTnVtPjxyZWNv

cmQ+PHJlYy1udW1iZXI+MjE2NzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJF

TiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1w

PSIxNDQxMzEwNzc0Ij4yMTY3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9Ikpv

dXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhv

cj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5Cb3JzdGxhcCwgSi48L2F1dGhvcj48

YXV0aG9yPlRha3gsIFIuIEEuPC9hdXRob3I+PGF1dGhvcj5TY2hpbGhhbSwgQS4gTS48L2F1dGhv

cj48YXV0aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9y

PjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5VdHJlY2h0IFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIERlcGFydG1l

bnQgb2YgUmFkaW9sb2d5LCBVdHJlY2h0LCBUaGUgTmV0aGVybGFuZHMuIG0ud2lsbGVtaW5rQHVt

Y3V0cmVjaHQubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5UaGUgZWZmZWN0cyBvZiBj

b21wdXRlZCB0b21vZ3JhcGh5IHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIG9uIHNvbGlk

IHB1bG1vbmFyeSBub2R1bGUgdm9sdW1lIHF1YW50aWZpY2F0aW9uPC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPlBMb1MgT25lPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5QbG9TIG9uZTwvYWx0

LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlBMb1MgT25lPC9mdWxsLXRp

dGxlPjxhYmJyLTE+UGxvUyBvbmU8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2Fs

PjxmdWxsLXRpdGxlPlBMb1MgT25lPC9mdWxsLXRpdGxlPjxhYmJyLTE+UGxvUyBvbmU8L2FiYnIt

MT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz5lNTgwNTM8L3BhZ2VzPjx2b2x1bWU+ODwvdm9sdW1l

PjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5

d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxr

ZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoaWMgSW1hZ2UgRW5oYW5jZW1lbnQ8L2tleXdv

cmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0aG9sb2d5L3BoeXNpb3Bh

dGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5

IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PC9k

YXRlcz48aXNibj4xOTMyLTYyMDMgKEVsZWN0cm9uaWMpJiN4RDsxOTMyLTYyMDMgKExpbmtpbmcp

PC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNDYwOTI0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxh

dGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIzNDYwOTI0

PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxjdXN0b20yPjM1ODQwNDI8L2N1c3RvbTI+PGVs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEzNzEvam91cm5hbC5wb25lLjAwNTgwNTM8L2VsZWN0

cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+AG==

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5XaWxsZW1pbms8L0F1dGhvcj48WWVhcj4yMDEyPC9ZZWFy

PjxSZWNOdW0+MjE1MjwvUmVjTnVtPjxEaXNwbGF5VGV4dD4oMTYtMTgsIDI5LCAzNCk8L0Rpc3Bs

YXlUZXh0PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1MjwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlz

PjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQw

ZCIgdGltZXN0YW1wPSIxNDQxMjI0Mzk4Ij4yMTUyPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10

eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1

dGhvcnM+PGF1dGhvcj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5MZWluZXIsIFQu

PC9hdXRob3I+PGF1dGhvcj5CdWRkZSwgUi4gUC48L2F1dGhvcj48YXV0aG9yPmRlIEtvcnQsIEYu

IFAuPC9hdXRob3I+PGF1dGhvcj5WbGllZ2VudGhhcnQsIFIuPC9hdXRob3I+PGF1dGhvcj52YW4g

T29pamVuLCBQLiBNLjwvYXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48YXV0aG9y

PmRlIEpvbmcsIFAuIEEuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFk

ZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFV0cmVjaHQgVW5pdmVyc2l0eSBNZWRpY2Fs

IENlbnRlciwgSFAgRTAxLjEzMiwgSGVpZGVsYmVyZ2xhYW4gMTAwLCAzNTg0IENYIFV0cmVjaHQs

IFRoZSBOZXRoZXJsYW5kcy4gbS53aWxsZW1pbmtAdW1jdXRyZWNodC5ubDwvYXV0aC1hZGRyZXNz

Pjx0aXRsZXM+PHRpdGxlPlN5c3RlbWF0aWMgZXJyb3IgaW4gbHVuZyBub2R1bGUgdm9sdW1ldHJ5

OiBlZmZlY3Qgb2YgaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIHZlcnN1cyBmaWx0ZXJlZCBiYWNr

IHByb2plY3Rpb24gYXQgZGlmZmVyZW50IENUIHBhcmFtZXRlcnM8L3RpdGxlPjxzZWNvbmRhcnkt

dGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpS

LiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vub2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48

cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwv

cGVyaW9kaWNhbD48cGFnZXM+MTI0MS02PC9wYWdlcz48dm9sdW1lPjE5OTwvdm9sdW1lPjxudW1i

ZXI+NjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3JkPjxrZXl3

b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8

L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21w

dXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoeSwgVGhv

cmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdv

cmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jk

cz48ZGF0ZXM+PHllYXI+MjAxMjwveWVhcj48cHViLWRhdGVzPjxkYXRlPkRlYzwvZGF0ZT48L3B1

Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxlY3Ryb25pYykmI3hEOzAzNjEtODAz

WCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MjMxNjk3MTQ8L2FjY2Vzc2lvbi1udW0+

PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJt

ZWQvMjMxNjk3MTQ8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3Vy

Y2UtbnVtPjEwLjIyMTQvQUpSLjEyLjg3Mjc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldpZWxwdXR6PC9BdXRob3I+PFllYXI+MjAxMzwvWWVh

cj48UmVjTnVtPjIxNTM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNTM8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTIyNDQ1NCI+MjE1Mzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+V2llbHB1dHosIE0uIE8uPC9hdXRob3I+PGF1

dGhvcj5MZWRlcmxpbiwgTS48L2F1dGhvcj48YXV0aG9yPldyb2JsZXdza2ksIEouPC9hdXRob3I+

PGF1dGhvcj5EaW5rZWwsIEouPC9hdXRob3I+PGF1dGhvcj5FaWNoaW5nZXIsIE0uPC9hdXRob3I+

PGF1dGhvcj5CaWVkZXJlciwgSi48L2F1dGhvcj48YXV0aG9yPkthdWN6b3IsIEguIFUuPC9hdXRo

b3I+PGF1dGhvcj5QdWRlcmJhY2gsIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3Jz

PjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBEaWFnbm9zdGljIGFuZCBJbnRlcnZlbnRpb25h

bCBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgb2YgSGVpZGVsYmVyZywgSW0gTmV1ZW5o

ZWltZXIgRmVsZCAxMTAsIDY5MTIwIEhlaWRlbGJlcmcsIEdlcm1hbnkuIE1hcmsud2llbHB1ZXR6

QG1lZC51bmktaGVpZGVsYmVyZy5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkNUIHZv

bHVtZXRyeSBvZiBhcnRpZmljaWFsIHB1bG1vbmFyeSBub2R1bGVzIHVzaW5nIGFuIGV4IHZpdm8g

bHVuZyBwaGFudG9tOiBpbmZsdWVuY2Ugb2YgZXhwb3N1cmUgcGFyYW1ldGVycyBhbmQgaXRlcmF0

aXZlIHJlY29uc3RydWN0aW9uIG9uIHJlcHJvZHVjaWJpbGl0eTwvdGl0bGU+PHNlY29uZGFyeS10

aXRsZT5FdXIgSiBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIGpv

dXJuYWwgb2YgcmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwt

dGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGlj

YWw+PGZ1bGwtdGl0bGU+RXVyb3BlYW4gSm91cm5hbCBvZiBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+

PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTU3Ny04MzwvcGFnZXM+PHZvbHVtZT44Mjwvdm9sdW1l

PjxudW1iZXI+OTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29y

ZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2luZywgVGhyZWUtRGltZW5z

aW9uYWwvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5nPC9rZXl3

b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3Jh

cGhpYyBJbWFnZSBFbmhhbmNlbWVudC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SYWRpb2dy

YXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9r

ZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3

b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFy

eSBQdWxtb25hcnkgTm9kdWxlLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3Jh

cGh5LCBYLVJheSBDb21wdXRlZC8qaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3b3JkPjwv

a2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5TZXA8L2Rh

dGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODcyLTc3MjcgKEVsZWN0cm9uaWMpJiN4RDsw

NzIwLTA0OFggKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNzI3Mzc2PC9hY2Nlc3Np

b24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5n

b3YvcHVibWVkLzIzNzI3Mzc2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmlj

LXJlc291cmNlLW51bT4xMC4xMDE2L2ouZWpyYWQuMjAxMy4wNC4wMzU8L2VsZWN0cm9uaWMtcmVz

b3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkNvZW5lbjwvQXV0aG9yPjxZ

ZWFyPjIwMTM8L1llYXI+PFJlY051bT4yMTY2PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4y

MTY2PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1

emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMDk4MTkiPjIx

NjY8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4x

NzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkNvZW5lbiwgQS48L2F1

dGhvcj48YXV0aG9yPkhvbmRhLCBPLjwvYXV0aG9yPjxhdXRob3I+dmFuIGRlciBKYWd0LCBFLiBK

LjwvYXV0aG9yPjxhdXRob3I+VG9taXlhbWEsIE4uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJp

YnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIE9zYWthIFVuaXZl

cnNpdHkgR3JhZHVhdGUgU2Nob29sIG9mIE1lZGljaW5lLCAyLTIgWWFtYWRhb2thLCBTdWl0YSBD

aXR5LCBPc2FrYSwgNTY1LTA4NzEsIEphcGFuLCBhZHJpYWFuY29lbmVuQGdtYWlsLmNvbS48L2F1

dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Db21wdXRlci1hc3Npc3RlZCBzb2xpZCBsdW5nIG5v

ZHVsZSAzRCB2b2x1bWV0cnkgb24gQ1Q6IGluZmx1ZW5jZSBvZiBzY2FuIG1vZGUgYW5kIGl0ZXJh

dGl2ZSByZWNvbnN0cnVjdGlvbjogYSBDVCBwaGFudG9tIHN0dWR5PC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPkpwbiBKIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+SmFwYW5lc2Ug

am91cm5hbCBvZiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVs

bC10aXRsZT5KcG4gSiBSYWRpb2w8L2Z1bGwtdGl0bGU+PGFiYnItMT5KYXBhbmVzZSBqb3VybmFs

IG9mIHJhZGlvbG9neTwvYWJici0xPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwt

dGl0bGU+SnBuIEogUmFkaW9sPC9mdWxsLXRpdGxlPjxhYmJyLTE+SmFwYW5lc2Ugam91cm5hbCBv

ZiByYWRpb2xvZ3k8L2FiYnItMT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz42NzctODQ8L3BhZ2Vz

Pjx2b2x1bWU+MzE8L3ZvbHVtZT48bnVtYmVyPjEwPC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3Jk

Pkh1bWFuczwva2V5d29yZD48a2V5d29yZD4qSW1hZ2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tl

eXdvcmQ+PGtleXdvcmQ+KlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlv

Z3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8

L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVs

bW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwg

WC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+

MjAxMzwveWVhcj48cHViLWRhdGVzPjxkYXRlPk9jdDwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVz

Pjxpc2JuPjE4NjctMTA4WCAoRWxlY3Ryb25pYykmI3hEOzE4NjctMTA3MSAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MjM5NTUzMTc8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjM5NTUzMTc8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEwMDcv

czExNjA0LTAxMy0wMjM1LTM8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0

ZT48Q2l0ZT48QXV0aG9yPkNoZW48L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE1

NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE1NDwvcmVjLW51bWJlcj48Zm9yZWlnbi1r

ZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNm

YWQwZCIgdGltZXN0YW1wPSIxNDQxMjI0NTIzIj4yMTU0PC9rZXk+PC9mb3JlaWduLWtleXM+PHJl

Zi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+

PGF1dGhvcnM+PGF1dGhvcj5DaGVuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFybmhhcnQsIEguPC9h

dXRob3I+PGF1dGhvcj5SaWNoYXJkLCBTLjwvYXV0aG9yPjxhdXRob3I+Um9iaW5zLCBNLjwvYXV0

aG9yPjxhdXRob3I+Q29sc2hlciwgSi48L2F1dGhvcj48YXV0aG9yPlNhbWVpLCBFLjwvYXV0aG9y

PjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk1lZGljYWwgUGh5c2ljcyBH

cmFkdWF0ZSBQcm9ncmFtLCBEdWtlIFVuaXZlcnNpdHksIER1cmhhbSwgTm9ydGggQ2Fyb2xpbmEg

Mjc3MDUgYW5kIENhcmwgRS4gUmF2aW4gQWR2YW5jZWQgSW1hZ2luZyBMYWJvcmF0b3JpZXMsIER1

a2UgVW5pdmVyc2l0eSwgRHVyaGFtLCBOb3J0aCBDYXJvbGluYSAyNzcwNS48L2F1dGgtYWRkcmVz

cz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmljIHF1YW50aWZpY2F0aW9uIG9mIGx1bmcgbm9kdWxl

cyBpbiBDVCB3aXRoIGl0ZXJhdGl2ZSByZWNvbnN0cnVjdGlvbiAoQVNpUiBhbmQgTUJJUik8L3Rp

dGxlPjxzZWNvbmRhcnktdGl0bGU+TWVkIFBoeXM8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

Pk1lZGljYWwgcGh5c2ljczwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPk1lZCBQaHlzPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+MTExOTAyPC9wYWdl

cz48dm9sdW1lPjQwPC92b2x1bWU+PG51bWJlcj4xMTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29y

ZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3b3JkPkFudGhyb3BvbWV0cnkvbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9yYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHkvKnJhZGlvdGhlcmFw

eTwva2V5d29yZD48a2V5d29yZD5NdWx0aXBsZSBQdWxtb25hcnkgTm9kdWxlcy9yYWRpb2dyYXBo

eTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywgSW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5S

YWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRl

cnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+

UmFkaW9tZXRyeS9tZXRob2RzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvdGhlcmFweSBQbGFubmlu

ZywgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNp

YmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2NhdHRlcmluZywgUmFkaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPipUb21vZ3JhcGh5

LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEzPC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MDA5NC0yNDA1IChQcmludCkmI3hEOzAwOTQtMjQwNSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lv

bi1udW0+MjQzMjA0MzU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0

dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMjQzMjA0MzU8L3VybD48L3JlbGF0ZWQt

dXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExMTgvMS40ODIzNDYzPC9l

bGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5XaWxs

ZW1pbms8L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjE2NzwvUmVjTnVtPjxyZWNv

cmQ+PHJlYy1udW1iZXI+MjE2NzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJF

TiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1w

PSIxNDQxMzEwNzc0Ij4yMTY3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9Ikpv

dXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhv

cj5XaWxsZW1pbmssIE0uIEouPC9hdXRob3I+PGF1dGhvcj5Cb3JzdGxhcCwgSi48L2F1dGhvcj48

YXV0aG9yPlRha3gsIFIuIEEuPC9hdXRob3I+PGF1dGhvcj5TY2hpbGhhbSwgQS4gTS48L2F1dGhv

cj48YXV0aG9yPkxlaW5lciwgVC48L2F1dGhvcj48YXV0aG9yPkJ1ZGRlLCBSLiBQLjwvYXV0aG9y

PjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5VdHJlY2h0IFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIsIERlcGFydG1l

bnQgb2YgUmFkaW9sb2d5LCBVdHJlY2h0LCBUaGUgTmV0aGVybGFuZHMuIG0ud2lsbGVtaW5rQHVt

Y3V0cmVjaHQubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5UaGUgZWZmZWN0cyBvZiBj

b21wdXRlZCB0b21vZ3JhcGh5IHdpdGggaXRlcmF0aXZlIHJlY29uc3RydWN0aW9uIG9uIHNvbGlk

IHB1bG1vbmFyeSBub2R1bGUgdm9sdW1lIHF1YW50aWZpY2F0aW9uPC90aXRsZT48c2Vjb25kYXJ5

LXRpdGxlPlBMb1MgT25lPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5QbG9TIG9uZTwvYWx0

LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlBMb1MgT25lPC9mdWxsLXRp

dGxlPjxhYmJyLTE+UGxvUyBvbmU8L2FiYnItMT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2RpY2Fs

PjxmdWxsLXRpdGxlPlBMb1MgT25lPC9mdWxsLXRpdGxlPjxhYmJyLTE+UGxvUyBvbmU8L2FiYnIt

MT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz5lNTgwNTM8L3BhZ2VzPjx2b2x1bWU+ODwvdm9sdW1l

PjxudW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5

d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxr

ZXl3b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+

THVuZyBWb2x1bWUgTWVhc3VyZW1lbnRzPC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+

PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoaWMgSW1hZ2UgRW5oYW5jZW1lbnQ8L2tleXdv

cmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcGF0aG9sb2d5L3BoeXNpb3Bh

dGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5

IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PC9k

YXRlcz48aXNibj4xOTMyLTYyMDMgKEVsZWN0cm9uaWMpJiN4RDsxOTMyLTYyMDMgKExpbmtpbmcp

PC9pc2JuPjxhY2Nlc3Npb24tbnVtPjIzNDYwOTI0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxh

dGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIzNDYwOTI0

PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxjdXN0b20yPjM1ODQwNDI8L2N1c3RvbTI+PGVs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjEzNzEvam91cm5hbC5wb25lLjAwNTgwNTM8L2VsZWN0

cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+AG==

ADDIN EN.CITE.DATA (16-18, 29, 34). Both algorithm types are acceptable for this Profile.The Reconstruction Kernel influences the texture and the appearance of nodules in the reconstructed images, including the sharpness of the nodule edges. In general, a softer, smoother kernel reduces noise at the expense of spatial resolution, while a sharper, higher-frequency kernel gives the appearance of improved resolution at the expense of increased noise. Kernel types may interact differently with different software segmentation algorithms. Theoretically, the ideal kernel choice for any particular scanner is one that provides the highest resolution without edge enhancement, which generally will be a kernel in the medium-smooth to medium-sharp range of those available on clinical scanners. With increasing kernel smoothness, underestimation of nodule volume becomes a potential concern, while with increasing kernel sharpness, image noise and segmentation errors become potential concerns. Use of a reconstruction kernel on follow-up scans consistent with baseline therefore is particularly important for relying on the Profile Claims. 3.8.2 SpecificationParameterActorSpecificationDICOM TagReconstruction ProtocolTechnologistShall select a protocol that has been previously prepared and validated for this purpose (See section 3.4.2 "Protocol Design Specification").ReconstructionField of ViewTechnologistShall ensure the Field of View spans at least the full extent of the thoracic and abdominal cavity, but not substantially greater than that, and is consistent with baseline.Reconstruction Field of View (0018,9317)Reconstructed Image ThicknessTechnologistShall set to less than or equal to 1.25 mm and consistent (i.e. within 0.5mm) with baseline. Slice Thickness (0018,0050)Reconstruction IntervalTechnologistShall set to less than or equal to the Reconstructed Image Thickness (i.e. no gap, may have overlap) and consistent with baseline.Spacing Between Slices (0018,0088)Reconstruction Kernel TechnologistShall set the reconstruction kernel and parameters consistent with baseline (i.e. the same kernel and parameters if available, otherwise the kernel most closely matching the kernel response of the baseline). Convolution Kernel (0018,1210), Convolution Kernel Group (0018,9316) 3.9. Image Quality AssuranceThis activity involves evaluating the reconstructed images prior to image analysis. It includes image criteria that are necessary to reliably meet the Profile Claim.3.9.1 DiscussionThis Image QA activity represents the portion of QA performed between image generation and analysis where characteristics of the content of the image are checked for compliance with the profile. The Image QA details listed here are the ones QIBA has chosen to highlight in relation to achieving the Profile claim. It is expected that sites will perform many other QA procedures as part of good imaging practices. Numerous factors can affect image quality and result in erroneous nodule volume measurements. Motion artifacts and Dense Object Artifacts can alter the apparent size, shape, and borders of nodules. Certain Thoracic Disease processes may alter the attenuation of the lung surrounding a nodule and interfere with identification of its true borders. Contact between a nodule and anatomic structures such as pulmonary vessels or the chest wall, mediastinum, or diaphragm also may affect Nodule Margin Conspicuity and obscure the true borders. Although screening may still be performed on them, the Claims of this Profile do not apply to nodules affected by image quality deficiencies that impair Overall Nodule Measurability and the sensitivity for nodule detection may be reduced.3.9.2 SpecificationParameterActorRequirementMotion ArtifactsTechnologistShall confirm the Images to be analyzed are free from motion artifacts.Image AnalystDense Object ArtifactsTechnologistShall confirm the Images to be analyzed are free from artifacts due to dense objects or anatomic positioning.Image AnalystThoracic diseaseImage AnalystShall confirm the Images to be analyzed are free from disease processes affecting the measurability of the nodule.Nodule Margin ConspicuityImage AnalystShall confirm the Nodules to be analyzed are sufficiently distinct from and unattached to other structures of similar attenuation.Nodule SizeImage AnalystShall confirm (now or during measurement) that tumor longest in-plane diameter is between 6 mm and 12 mm. (For a spherical tumor this would roughly correspond to a volume between 113 mm3 and 905 mm3.)Overall Nodule MeasurabilityImage AnalystShall disqualify any Nodules and images with features that might reasonably be expected to degrade measurement reliability.3.10. Image AnalysisThis activity involves measuring the volume change for subjects over one or more timepoints. It includes criteria and procedures related to producing quantitative measurements from the images that are necessary to reliably meet the Profile Claim.3.10.1 DiscussionImage analysis should be performed using Image Analysis Tool programs that have received appropriate scientific validation. Because different programs use different segmentation algorithms that may result in different volumetric measurements even for ideal nodules, and different versions of the same program or its components may change its performance, a nodule being evaluated for change must be analyzed at both time points with the same software program (manufacturer, model, and version). The volume of a lung nodule is typically determined by defining the nodule boundary (referred to as segmentation) and computing the volume within the boundary. Segmentation typically is performed by an automated algorithm after the user designates the location of the nodule to be measured with a starting seed point, cursor stroke, or region of interest. A subjective Segmentation Analysis should be conducted to closely inspect segmentation volumes in three dimensions for concordance with the visually-assessed nodule margins. Assessment of this concordance can be affected by the Image Display Settings, so a window and level appropriate for viewing the lung should be used and kept the same for all time points being compared. Nodules for which the segmentation tracks the margins most accurately, without manual editing, will most closely meet the Claims of this Profile. If in the radiologist’s opinion the segmentation is unacceptable, quantitative volumetry shall not be used and nodule size change should be assessed using standard clinical methods. Nodule location and margin characteristics impact segmentation quality and variance in nodule measurement, which are more favorable for nodules that are isolated, well-separated from adjacent structures, and have smooth borders compared to nodules abutting pulmonary vessels or parietal pleura, and also for smooth nodules compared to spiculated or irregularly shaped nodules PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5SZXZlbDwvQXV0aG9yPjxZZWFyPjIwMDQ8L1llYXI+PFJl

Y051bT4yMTcwPC9SZWNOdW0+PERpc3BsYXlUZXh0PigzNS00MCk8L0Rpc3BsYXlUZXh0PjxyZWNv

cmQ+PHJlYy1udW1iZXI+MjE3MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJF

TiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1w

PSIxNDQxMzEyNjc4Ij4yMTcwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9Ikpv

dXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhv

cj5SZXZlbCwgTS4gUC48L2F1dGhvcj48YXV0aG9yPkxlZm9ydCwgQy48L2F1dGhvcj48YXV0aG9y

PkJpc3NlcnksIEEuPC9hdXRob3I+PGF1dGhvcj5CaWVudmVudSwgTS48L2F1dGhvcj48YXV0aG9y

PkF5Y2FyZCwgTC48L2F1dGhvcj48YXV0aG9yPkNoYXRlbGxpZXIsIEcuPC9hdXRob3I+PGF1dGhv

cj5GcmlqYSwgRy48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVz

cz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgQXNzaXN0YW5jZSBQdWJsaXF1ZSBkZXMgSG9waXRh

dXggZGUgUGFyaXMvSU5TRVJNLCBHZW9yZ2VzIFBvbXBpZG91IEV1cm9wZWFuIFVuaXZlcnNpdHkg

SG9zcGl0YWwsIDIwIFJ1ZSBMZWJsYW5jLCA3NTAxNSBQYXJpcywgRnJhbmNlLiBtYXJpZS1waWVy

cmUucmV2ZWxAaG9wLmVncC5hcC1ob3AtcGFyaXMuZnI8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0

aXRsZT5QdWxtb25hcnkgbm9kdWxlczogcHJlbGltaW5hcnkgZXhwZXJpZW5jZSB3aXRoIHRocmVl

LWRpbWVuc2lvbmFsIGV2YWx1YXRpb248L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sb2d5

PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxl

cz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9wZXJpb2Rp

Y2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9h

bHQtcGVyaW9kaWNhbD48cGFnZXM+NDU5LTY2PC9wYWdlcz48dm9sdW1lPjIzMTwvdm9sdW1lPjxu

dW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5d29y

ZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBEaXNlYXNlcy8q

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtl

eXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL21ldGhvZHMvc3RhdGlzdGljcyAmYW1w

OyBudW1lcmljYWwgZGF0YTwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA0PC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+TWF5PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MDAzMy04NDE5IChQcmludCkmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lv

bi1udW0+MTUxMjg5OTE8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0

dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTUxMjg5OTE8L3VybD48L3JlbGF0ZWQt

dXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjIzMTIw

MzAyNDE8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0

aG9yPlBldHJvdTwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+PFJlY051bT4yMTcxPC9SZWNOdW0+

PHJlY29yZD48cmVjLW51bWJlcj4yMTcxPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBh

cHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1l

c3RhbXA9IjE0NDEzMTI3NjkiPjIxNzE8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFt

ZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48

YXV0aG9yPlBldHJvdSwgTS48L2F1dGhvcj48YXV0aG9yPlF1aW50LCBMLiBFLjwvYXV0aG9yPjxh

dXRob3I+TmFuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFrZXIsIEwuIEguPC9hdXRob3I+PC9hdXRo

b3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ks

IFVuaXZlcnNpdHkgb2YgTWljaGlnYW4sIDE1MDAgRSBNZWRpY2FsIENlbnRlciBEci4sIEFubiBB

cmJvciwgTUkgNDgxMDksIFVTQS4gbXBldHJvdUB1bWljaC5lZHU8L2F1dGgtYWRkcmVzcz48dGl0

bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxlIHZvbHVtZXRyaWMgbWVhc3VyZW1lbnQgdmFyaWFi

aWxpdHkgYXMgYSBmdW5jdGlvbiBvZiBDVCBzbGljZSB0aGlja25lc3MgYW5kIG5vZHVsZSBtb3Jw

aG9sb2d5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L3NlY29u

ZGFyeS10aXRsZT48YWx0LXRpdGxlPkFKUi4gQW1lcmljYW4gam91cm5hbCBvZiByb2VudGdlbm9s

b2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QUpSIEFtIEog

Um9lbnRnZW5vbDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjMwNi0xMjwvcGFnZXM+

PHZvbHVtZT4xODg8L3ZvbHVtZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+

QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5BbmF0b215LCBDcm9zcy1TZWN0aW9uYWwvKm1l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KkFydGlmaWNpYWwgSW50ZWxsaWdlbmNlPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNp

b25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5JbmZvcm1hdGlvbiBTdG9yYWdlIGFuZCBS

ZXRyaWV2YWwvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9yYWRpb2dy

YXBoeTwva2V5d29yZD48a2V5d29yZD5QYXR0ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvKm1l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50L21l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9u

LCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2li

aWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lm

aWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9n

cmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPkZlYjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxl

Y3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTcy

NDIyMzU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTcyNDIyMzU8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIyMTQvQUpSLjA1LjEwNjM8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldhbmc8L0F1dGhv

cj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MjE3MjwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1i

ZXI+MjE3MjwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2

eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMzEyODcw

Ij4yMTcyPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XYW5nLCBZLjwv

YXV0aG9yPjxhdXRob3I+dmFuIEtsYXZlcmVuLCBSLiBKLjwvYXV0aG9yPjxhdXRob3I+dmFuIGRl

ciBaYWFnLUxvb25lbiwgSC4gSi48L2F1dGhvcj48YXV0aG9yPmRlIEJvY2ssIEcuIEguPC9hdXRo

b3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwvYXV0aG9yPjxhdXRob3I+WHUsIEQuIE0uPC9hdXRo

b3I+PGF1dGhvcj5MZXVzdmVsZCwgQS4gTC48L2F1dGhvcj48YXV0aG9yPmRlIEtvbmluZywgSC4g

Si48L2F1dGhvcj48YXV0aG9yPlNjaG9sdGVuLCBFLiBULjwvYXV0aG9yPjxhdXRob3I+VmVyc2No

YWtlbGVuLCBKLjwvYXV0aG9yPjxhdXRob3I+UHJva29wLCBNLjwvYXV0aG9yPjxhdXRob3I+T3Vk

a2VyaywgTS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5n

ZW4sIFVuaXZlcnNpdHkgb2YgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy48

L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5FZmZlY3Qgb2Ygbm9kdWxlIGNoYXJhY3Rlcmlz

dGljcyBvbiB2YXJpYWJpbGl0eSBvZiBzZW1pYXV0b21hdGVkIHZvbHVtZSBtZWFzdXJlbWVudHMg

aW4gcHVsbW9uYXJ5IG5vZHVsZXMgZGV0ZWN0ZWQgaW4gYSBsdW5nIGNhbmNlciBzY3JlZW5pbmcg

cHJvZ3JhbTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFyeS10aXRs

ZT48YWx0LXRpdGxlPlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2Rp

Y2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxw

YWdlcz42MjUtMzE8L3BhZ2VzPjx2b2x1bWU+MjQ4PC92b2x1bWU+PG51bWJlcj4yPC9udW1iZXI+

PGtleXdvcmRzPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5Mb2dpc3RpYyBNb2RlbHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29y

ZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8L2tleXdvcmQ+PGtleXdvcmQ+TWFs

ZTwva2V5d29yZD48a2V5d29yZD5NYXNzIFNjcmVlbmluZzwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SZXRyb3NwZWN0aXZlIFN0dWRpZXM8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5

PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFNwaXJhbCBDb21wdXRlZC8qbWV0aG9kczwv

a2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRh

dGU+QXVnPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTUyNy0xMzE1IChFbGVjdHJv

bmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xODY0MTI1

NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2Jp

Lm5sbS5uaWguZ292L3B1Ym1lZC8xODY0MTI1NTwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTE0OC9yYWRpb2wuMjQ4MjA3MDk1NzwvZWxlY3Ry

b25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SGVpbjwvQXV0

aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTY5PC9SZWNOdW0+PHJlY29yZD48cmVjLW51

bWJlcj4yMTY5PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0i

ZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMTI1

ODMiPjIxNjk8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlaW4sIFAu

IEEuPC9hdXRob3I+PGF1dGhvcj5Sb21hbm8sIFYuIEMuPC9hdXRob3I+PGF1dGhvcj5Sb2dhbGxh

LCBQLjwvYXV0aG9yPjxhdXRob3I+S2xlc3NlbiwgQy48L2F1dGhvcj48YXV0aG9yPkxlbWJja2Us

IEEuPC9hdXRob3I+PGF1dGhvcj5EaWNrZW4sIFYuPC9hdXRob3I+PGF1dGhvcj5Cb3JuZW1hbm4s

IEwuPC9hdXRob3I+PGF1dGhvcj5CYXVrbmVjaHQsIEguIEMuPC9hdXRob3I+PC9hdXRob3JzPjwv

Y29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+SW5zdGl0dXQgZnVyIFJhZGlvbG9naWUsIENoYXJp

dGUgQ2FtcHVzIE1pdHRlLCBDaGFyaXRlLVVuaXZlcnNpdGF0c21lZGl6aW4gQmVybGluLiBwYXRy

aWNrLmhlaW5AY2hhcml0ZS5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkxpbmVhciBh

bmQgdm9sdW1lIG1lYXN1cmVtZW50cyBvZiBwdWxtb25hcnkgbm9kdWxlcyBhdCBkaWZmZXJlbnQg

Q1QgZG9zZSBsZXZlbHMgLSBpbnRyYXNjYW4gYW5kIGludGVyc2NhbiBhbmFseXNpczwvdGl0bGU+

PHNlY29uZGFyeS10aXRsZT5Sb2ZvPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5Sb0ZvIDog

Rm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBkZXIgUm9udGdlbnN0cmFobGVuIHVuZCBkZXIg

TnVrbGVhcm1lZGl6aW48L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRs

ZT5Sb2ZvPC9mdWxsLXRpdGxlPjxhYmJyLTE+Um9GbyA6IEZvcnRzY2hyaXR0ZSBhdWYgZGVtIEdl

YmlldGUgZGVyIFJvbnRnZW5zdHJhaGxlbiB1bmQgZGVyIE51a2xlYXJtZWRpemluPC9hYmJyLTE+

PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5Sb2ZvPC9mdWxsLXRpdGxl

PjxhYmJyLTE+Um9GbyA6IEZvcnRzY2hyaXR0ZSBhdWYgZGVtIEdlYmlldGUgZGVyIFJvbnRnZW5z

dHJhaGxlbiB1bmQgZGVyIE51a2xlYXJtZWRpemluPC9hYmJyLTE+PC9hbHQtcGVyaW9kaWNhbD48

cGFnZXM+MjQtMzE8L3BhZ2VzPjx2b2x1bWU+MTgxPC92b2x1bWU+PG51bWJlcj4xPC9udW1iZXI+

PGtleXdvcmRzPjxrZXl3b3JkPkNhcmNpbm9tYSwgUmVuYWwgQ2VsbC9wYXRob2xvZ3kvcmFkaW9n

cmFwaHkvKnNlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5Db21wdXRlciBHcmFwaGljczwva2V5

d29yZD48a2V5d29yZD5Db25lLUJlYW0gQ29tcHV0ZWQgVG9tb2dyYXBoeS8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywg

Q29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+S2lkbmV5IE5lb3Bs

YXNtcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nL3BhdGhvbG9neS9yYWRpb2dy

YXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9wYXRob2xvZ3kvKnJhZGlvZ3Jh

cGh5L3NlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5OZW9wbGFzbSBTdGFnaW5nPC9rZXl3b3Jk

PjxrZXl3b3JkPk9ic2VydmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24g

RG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJldHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48

a2V5d29yZD5TYXJjb21hL3BhdGhvbG9neS9yYWRpb2dyYXBoeS8qc2Vjb25kYXJ5PC9rZXl3b3Jk

PjxrZXl3b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5T

b2Z0IFRpc3N1ZSBOZW9wbGFzbXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdh

cmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFw

aHk8L2tleXdvcmQ+PGtleXdvcmQ+VGh5cm9pZCBOZW9wbGFzbXMvcGF0aG9sb2d5L3JhZGlvZ3Jh

cGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFNwaXJhbCBDb21wdXRlZC8qbWV0aG9k

czwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+

PGRhdGU+SmFuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzOC05MDEwIChFbGVj

dHJvbmljKSYjeEQ7MTQzOC05MDEwIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xOTA4

NTY4NzwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5u

Y2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xOTA4NTY4NzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJs

cz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA1NS9zLTIwMDgtMTAyNzg3NDwvZWxlY3Ry

b25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SGVpbjwvQXV0

aG9yPjxZZWFyPjIwMTA8L1llYXI+PFJlY051bT4yMTY4PC9SZWNOdW0+PHJlY29yZD48cmVjLW51

bWJlcj4yMTY4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0i

ZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMTI1

MzQiPjIxNjg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlaW4sIFAu

IEEuPC9hdXRob3I+PGF1dGhvcj5Sb21hbm8sIFYuIEMuPC9hdXRob3I+PGF1dGhvcj5Sb2dhbGxh

LCBQLjwvYXV0aG9yPjxhdXRob3I+S2xlc3NlbiwgQy48L2F1dGhvcj48YXV0aG9yPkxlbWJja2Us

IEEuPC9hdXRob3I+PGF1dGhvcj5Cb3JuZW1hbm4sIEwuPC9hdXRob3I+PGF1dGhvcj5EaWNrZW4s

IFYuPC9hdXRob3I+PGF1dGhvcj5IYW1tLCBCLjwvYXV0aG9yPjxhdXRob3I+QmF1a25lY2h0LCBI

LiBDLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBDaGFyaXRlIENhbXB1cyBNaXR0ZSwgQ2hhcml0ZS1Vbml2ZXJz

aXRhdHNtZWRpemluIEJlcmxpbiwgQ2hhcml0ZXBsYXR6IDEsIDEwMTE3LCBCZXJsaW4sIEdlcm1h

bnkuIHBhdHJpY2suaGVpbkBjaGFyaXRlLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+

VmFyaWFiaWxpdHkgb2Ygc2VtaWF1dG9tYXRlZCBsdW5nIG5vZHVsZSB2b2x1bWV0cnkgb24gdWx0

cmFsb3ctZG9zZSBDVDogY29tcGFyaXNvbiB3aXRoIG5vZHVsZSB2b2x1bWV0cnkgb24gc3RhbmRh

cmQtZG9zZSBDVDwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5KIERpZ2l0IEltYWdpbmc8L3NlY29u

ZGFyeS10aXRsZT48YWx0LXRpdGxlPkpvdXJuYWwgb2YgZGlnaXRhbCBpbWFnaW5nPC9hbHQtdGl0

bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBEaWdpdCBJbWFnaW5nPC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+OC0xNzwvcGFnZXM+PHZvbHVtZT4yMzwvdm9sdW1l

PjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3Jk

PjxrZXl3b3JkPkF1dG9tYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+Q29uZmlkZW5jZSBJbnRlcnZh

bHM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1h

Z2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJldHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD4qU29mdHdhcmU8

L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMDwveWVhcj48cHViLWRhdGVzPjxkYXRl

PkZlYjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE2MTgtNzI3WCAoRWxlY3Ryb25p

YykmI3hEOzA4OTctMTg4OSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTg3NzMyNDA8

L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5u

bG0ubmloLmdvdi9wdWJtZWQvMTg3NzMyNDA8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGN1

c3RvbTI+MzA0Mzc1MDwvY3VzdG9tMj48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAwNy9z

MTAyNzgtMDA4LTkxNTctNTwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRl

PjxDaXRlPjxBdXRob3I+R2lldGVtYTwvQXV0aG9yPjxZZWFyPjIwMDY8L1llYXI+PFJlY051bT4y

MTgxPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTgxPC9yZWMtbnVtYmVyPjxmb3JlaWdu

LWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNk

c2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjM1MjkiPjIxODE8L2tleT48L2ZvcmVpZ24ta2V5cz48

cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9y

cz48YXV0aG9ycz48YXV0aG9yPkdpZXRlbWEsIEguIEEuPC9hdXRob3I+PGF1dGhvcj5XYW5nLCBZ

LjwvYXV0aG9yPjxhdXRob3I+WHUsIEQuPC9hdXRob3I+PGF1dGhvcj52YW4gS2xhdmVyZW4sIFIu

IEouPC9hdXRob3I+PGF1dGhvcj5kZSBLb25pbmcsIEguPC9hdXRob3I+PGF1dGhvcj5TY2hvbHRl

biwgRS48L2F1dGhvcj48YXV0aG9yPlZlcnNjaGFrZWxlbiwgSi48L2F1dGhvcj48YXV0aG9yPktv

aGwsIEcuPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwvYXV0aG9yPjxhdXRob3I+UHJva29w

LCBNLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudGVyIFV0cmVjaHQsIEhl

aWRlbGJlcmdsYWFuIDEwMCwgMzU4NCBDWCBVdHJlY2h0LCBUaGUgTmV0aGVybGFuZHMuIGguZ2ll

dGVtYUBhenUubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxl

cyBkZXRlY3RlZCBhdCBsdW5nIGNhbmNlciBzY3JlZW5pbmc6IGludGVyb2JzZXJ2ZXIgdmFyaWFi

aWxpdHkgb2Ygc2VtaWF1dG9tYXRlZCB2b2x1bWUgbWVhc3VyZW1lbnRzPC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5

PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9s

b2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI1MS03PC9wYWdlcz48dm9s

dW1lPjI0MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZ2Vk

PC9rZXl3b3JkPjxrZXl3b3JkPkF1dG9tYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9r

ZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3Jk

PipPYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+T3JnYW4gU2l6ZTwva2V5d29y

ZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5T

b2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRp

b2dyYXBoeTwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA2PC95ZWFyPjxwdWIt

ZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04NDE5

IChQcmludCkmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTY5

MDg2Nzc8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTY5MDg2Nzc8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjI0MTEwNTA4NjA8L2Vs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5SZXZlbDwvQXV0aG9yPjxZZWFyPjIwMDQ8L1llYXI+PFJl

Y051bT4yMTcwPC9SZWNOdW0+PERpc3BsYXlUZXh0PigzNS00MCk8L0Rpc3BsYXlUZXh0PjxyZWNv

cmQ+PHJlYy1udW1iZXI+MjE3MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJF

TiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1w

PSIxNDQxMzEyNjc4Ij4yMTcwPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9Ikpv

dXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhv

cj5SZXZlbCwgTS4gUC48L2F1dGhvcj48YXV0aG9yPkxlZm9ydCwgQy48L2F1dGhvcj48YXV0aG9y

PkJpc3NlcnksIEEuPC9hdXRob3I+PGF1dGhvcj5CaWVudmVudSwgTS48L2F1dGhvcj48YXV0aG9y

PkF5Y2FyZCwgTC48L2F1dGhvcj48YXV0aG9yPkNoYXRlbGxpZXIsIEcuPC9hdXRob3I+PGF1dGhv

cj5GcmlqYSwgRy48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVz

cz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgQXNzaXN0YW5jZSBQdWJsaXF1ZSBkZXMgSG9waXRh

dXggZGUgUGFyaXMvSU5TRVJNLCBHZW9yZ2VzIFBvbXBpZG91IEV1cm9wZWFuIFVuaXZlcnNpdHkg

SG9zcGl0YWwsIDIwIFJ1ZSBMZWJsYW5jLCA3NTAxNSBQYXJpcywgRnJhbmNlLiBtYXJpZS1waWVy

cmUucmV2ZWxAaG9wLmVncC5hcC1ob3AtcGFyaXMuZnI8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0

aXRsZT5QdWxtb25hcnkgbm9kdWxlczogcHJlbGltaW5hcnkgZXhwZXJpZW5jZSB3aXRoIHRocmVl

LWRpbWVuc2lvbmFsIGV2YWx1YXRpb248L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+UmFkaW9sb2d5

PC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5SYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxl

cz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9wZXJpb2Rp

Y2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5SYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9h

bHQtcGVyaW9kaWNhbD48cGFnZXM+NDU5LTY2PC9wYWdlcz48dm9sdW1lPjIzMTwvdm9sdW1lPjxu

dW1iZXI+MjwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5d29yZD48a2V5d29y

ZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1h

Z2luZywgVGhyZWUtRGltZW5zaW9uYWw8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBEaXNlYXNlcy8q

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtl

eXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL21ldGhvZHMvc3RhdGlzdGljcyAmYW1w

OyBudW1lcmljYWwgZGF0YTwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA0PC95

ZWFyPjxwdWItZGF0ZXM+PGRhdGU+TWF5PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+

MDAzMy04NDE5IChQcmludCkmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lv

bi1udW0+MTUxMjg5OTE8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0

dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTUxMjg5OTE8L3VybD48L3JlbGF0ZWQt

dXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjIzMTIw

MzAyNDE8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0

aG9yPlBldHJvdTwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+PFJlY051bT4yMTcxPC9SZWNOdW0+

PHJlY29yZD48cmVjLW51bWJlcj4yMTcxPC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBh

cHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1l

c3RhbXA9IjE0NDEzMTI3NjkiPjIxNzE8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFt

ZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48

YXV0aG9yPlBldHJvdSwgTS48L2F1dGhvcj48YXV0aG9yPlF1aW50LCBMLiBFLjwvYXV0aG9yPjxh

dXRob3I+TmFuLCBCLjwvYXV0aG9yPjxhdXRob3I+QmFrZXIsIEwuIEguPC9hdXRob3I+PC9hdXRo

b3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ks

IFVuaXZlcnNpdHkgb2YgTWljaGlnYW4sIDE1MDAgRSBNZWRpY2FsIENlbnRlciBEci4sIEFubiBB

cmJvciwgTUkgNDgxMDksIFVTQS4gbXBldHJvdUB1bWljaC5lZHU8L2F1dGgtYWRkcmVzcz48dGl0

bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxlIHZvbHVtZXRyaWMgbWVhc3VyZW1lbnQgdmFyaWFi

aWxpdHkgYXMgYSBmdW5jdGlvbiBvZiBDVCBzbGljZSB0aGlja25lc3MgYW5kIG5vZHVsZSBtb3Jw

aG9sb2d5PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L3NlY29u

ZGFyeS10aXRsZT48YWx0LXRpdGxlPkFKUi4gQW1lcmljYW4gam91cm5hbCBvZiByb2VudGdlbm9s

b2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QUpSIEFtIEog

Um9lbnRnZW5vbDwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjMwNi0xMjwvcGFnZXM+

PHZvbHVtZT4xODg8L3ZvbHVtZT48bnVtYmVyPjI8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+

QWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5BbmF0b215LCBDcm9zcy1TZWN0aW9uYWwvKm1l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+KkFydGlmaWNpYWwgSW50ZWxsaWdlbmNlPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5nLCBUaHJlZS1EaW1lbnNp

b25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5JbmZvcm1hdGlvbiBTdG9yYWdlIGFuZCBS

ZXRyaWV2YWwvbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9yYWRpb2dy

YXBoeTwva2V5d29yZD48a2V5d29yZD5QYXR0ZXJuIFJlY29nbml0aW9uLCBBdXRvbWF0ZWQvKm1l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVuaGFuY2VtZW50L21l

dGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9u

LCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2li

aWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lm

aWNpdHk8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9n

cmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhv

ZHM8L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVz

PjxkYXRlPkZlYjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE1NDYtMzE0MSAoRWxl

Y3Ryb25pYykmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTcy

NDIyMzU8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTcyNDIyMzU8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIyMTQvQUpSLjA1LjEwNjM8L2VsZWN0cm9u

aWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPldhbmc8L0F1dGhv

cj48WWVhcj4yMDA4PC9ZZWFyPjxSZWNOdW0+MjE3MjwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1i

ZXI+MjE3MjwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2

eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxMzEyODcw

Ij4yMTcyPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNs

ZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5XYW5nLCBZLjwv

YXV0aG9yPjxhdXRob3I+dmFuIEtsYXZlcmVuLCBSLiBKLjwvYXV0aG9yPjxhdXRob3I+dmFuIGRl

ciBaYWFnLUxvb25lbiwgSC4gSi48L2F1dGhvcj48YXV0aG9yPmRlIEJvY2ssIEcuIEguPC9hdXRo

b3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwvYXV0aG9yPjxhdXRob3I+WHUsIEQuIE0uPC9hdXRo

b3I+PGF1dGhvcj5MZXVzdmVsZCwgQS4gTC48L2F1dGhvcj48YXV0aG9yPmRlIEtvbmluZywgSC4g

Si48L2F1dGhvcj48YXV0aG9yPlNjaG9sdGVuLCBFLiBULjwvYXV0aG9yPjxhdXRob3I+VmVyc2No

YWtlbGVuLCBKLjwvYXV0aG9yPjxhdXRob3I+UHJva29wLCBNLjwvYXV0aG9yPjxhdXRob3I+T3Vk

a2VyaywgTS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5n

ZW4sIFVuaXZlcnNpdHkgb2YgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy48

L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5FZmZlY3Qgb2Ygbm9kdWxlIGNoYXJhY3Rlcmlz

dGljcyBvbiB2YXJpYWJpbGl0eSBvZiBzZW1pYXV0b21hdGVkIHZvbHVtZSBtZWFzdXJlbWVudHMg

aW4gcHVsbW9uYXJ5IG5vZHVsZXMgZGV0ZWN0ZWQgaW4gYSBsdW5nIGNhbmNlciBzY3JlZW5pbmcg

cHJvZ3JhbTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5SYWRpb2xvZ3k8L3NlY29uZGFyeS10aXRs

ZT48YWx0LXRpdGxlPlJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxm

dWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PGFsdC1wZXJpb2Rp

Y2FsPjxmdWxsLXRpdGxlPlJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2FsPjxw

YWdlcz42MjUtMzE8L3BhZ2VzPjx2b2x1bWU+MjQ4PC92b2x1bWU+PG51bWJlcj4yPC9udW1iZXI+

PGtleXdvcmRzPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3Jk

PjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5Mb2dpc3RpYyBNb2RlbHM8L2tleXdv

cmQ+PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29y

ZD48a2V5d29yZD5MdW5nIFZvbHVtZSBNZWFzdXJlbWVudHM8L2tleXdvcmQ+PGtleXdvcmQ+TWFs

ZTwva2V5d29yZD48a2V5d29yZD5NYXNzIFNjcmVlbmluZzwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SZXRyb3NwZWN0aXZlIFN0dWRpZXM8L2tleXdvcmQ+

PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5

PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFNwaXJhbCBDb21wdXRlZC8qbWV0aG9kczwv

a2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA4PC95ZWFyPjxwdWItZGF0ZXM+PGRh

dGU+QXVnPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTUyNy0xMzE1IChFbGVjdHJv

bmljKSYjeEQ7MDAzMy04NDE5IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xODY0MTI1

NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2Jp

Lm5sbS5uaWguZ292L3B1Ym1lZC8xODY0MTI1NTwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48

ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTE0OC9yYWRpb2wuMjQ4MjA3MDk1NzwvZWxlY3Ry

b25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SGVpbjwvQXV0

aG9yPjxZZWFyPjIwMDk8L1llYXI+PFJlY051bT4yMTY5PC9SZWNOdW0+PHJlY29yZD48cmVjLW51

bWJlcj4yMTY5PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0i

ZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMTI1

ODMiPjIxNjk8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlaW4sIFAu

IEEuPC9hdXRob3I+PGF1dGhvcj5Sb21hbm8sIFYuIEMuPC9hdXRob3I+PGF1dGhvcj5Sb2dhbGxh

LCBQLjwvYXV0aG9yPjxhdXRob3I+S2xlc3NlbiwgQy48L2F1dGhvcj48YXV0aG9yPkxlbWJja2Us

IEEuPC9hdXRob3I+PGF1dGhvcj5EaWNrZW4sIFYuPC9hdXRob3I+PGF1dGhvcj5Cb3JuZW1hbm4s

IEwuPC9hdXRob3I+PGF1dGhvcj5CYXVrbmVjaHQsIEguIEMuPC9hdXRob3I+PC9hdXRob3JzPjwv

Y29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+SW5zdGl0dXQgZnVyIFJhZGlvbG9naWUsIENoYXJp

dGUgQ2FtcHVzIE1pdHRlLCBDaGFyaXRlLVVuaXZlcnNpdGF0c21lZGl6aW4gQmVybGluLiBwYXRy

aWNrLmhlaW5AY2hhcml0ZS5kZTwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkxpbmVhciBh

bmQgdm9sdW1lIG1lYXN1cmVtZW50cyBvZiBwdWxtb25hcnkgbm9kdWxlcyBhdCBkaWZmZXJlbnQg

Q1QgZG9zZSBsZXZlbHMgLSBpbnRyYXNjYW4gYW5kIGludGVyc2NhbiBhbmFseXNpczwvdGl0bGU+

PHNlY29uZGFyeS10aXRsZT5Sb2ZvPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5Sb0ZvIDog

Rm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBkZXIgUm9udGdlbnN0cmFobGVuIHVuZCBkZXIg

TnVrbGVhcm1lZGl6aW48L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRs

ZT5Sb2ZvPC9mdWxsLXRpdGxlPjxhYmJyLTE+Um9GbyA6IEZvcnRzY2hyaXR0ZSBhdWYgZGVtIEdl

YmlldGUgZGVyIFJvbnRnZW5zdHJhaGxlbiB1bmQgZGVyIE51a2xlYXJtZWRpemluPC9hYmJyLTE+

PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5Sb2ZvPC9mdWxsLXRpdGxl

PjxhYmJyLTE+Um9GbyA6IEZvcnRzY2hyaXR0ZSBhdWYgZGVtIEdlYmlldGUgZGVyIFJvbnRnZW5z

dHJhaGxlbiB1bmQgZGVyIE51a2xlYXJtZWRpemluPC9hYmJyLTE+PC9hbHQtcGVyaW9kaWNhbD48

cGFnZXM+MjQtMzE8L3BhZ2VzPjx2b2x1bWU+MTgxPC92b2x1bWU+PG51bWJlcj4xPC9udW1iZXI+

PGtleXdvcmRzPjxrZXl3b3JkPkNhcmNpbm9tYSwgUmVuYWwgQ2VsbC9wYXRob2xvZ3kvcmFkaW9n

cmFwaHkvKnNlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5Db21wdXRlciBHcmFwaGljczwva2V5

d29yZD48a2V5d29yZD5Db25lLUJlYW0gQ29tcHV0ZWQgVG9tb2dyYXBoeS8qbWV0aG9kczwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+SW1hZ2UgUHJvY2Vzc2luZywg

Q29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+S2lkbmV5IE5lb3Bs

YXNtcy9yYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nL3BhdGhvbG9neS9yYWRpb2dy

YXBoeTwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy9wYXRob2xvZ3kvKnJhZGlvZ3Jh

cGh5L3NlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5OZW9wbGFzbSBTdGFnaW5nPC9rZXl3b3Jk

PjxrZXl3b3JkPk9ic2VydmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24g

RG9zYWdlPC9rZXl3b3JkPjxrZXl3b3JkPlJldHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48

a2V5d29yZD5TYXJjb21hL3BhdGhvbG9neS9yYWRpb2dyYXBoeS8qc2Vjb25kYXJ5PC9rZXl3b3Jk

PjxrZXl3b3JkPlNlbnNpdGl2aXR5IGFuZCBTcGVjaWZpY2l0eTwva2V5d29yZD48a2V5d29yZD5T

b2Z0IFRpc3N1ZSBOZW9wbGFzbXMvcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdh

cmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFw

aHk8L2tleXdvcmQ+PGtleXdvcmQ+VGh5cm9pZCBOZW9wbGFzbXMvcGF0aG9sb2d5L3JhZGlvZ3Jh

cGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFNwaXJhbCBDb21wdXRlZC8qbWV0aG9k

czwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA5PC95ZWFyPjxwdWItZGF0ZXM+

PGRhdGU+SmFuPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzOC05MDEwIChFbGVj

dHJvbmljKSYjeEQ7MTQzOC05MDEwIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4xOTA4

NTY4NzwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5u

Y2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xOTA4NTY4NzwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJs

cz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA1NS9zLTIwMDgtMTAyNzg3NDwvZWxlY3Ry

b25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SGVpbjwvQXV0

aG9yPjxZZWFyPjIwMTA8L1llYXI+PFJlY051bT4yMTY4PC9SZWNOdW0+PHJlY29yZD48cmVjLW51

bWJlcj4yMTY4PC9yZWMtbnVtYmVyPjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0i

ZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDEzMTI1

MzQiPjIxNjg8L2tleT48L2ZvcmVpZ24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRp

Y2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPkhlaW4sIFAu

IEEuPC9hdXRob3I+PGF1dGhvcj5Sb21hbm8sIFYuIEMuPC9hdXRob3I+PGF1dGhvcj5Sb2dhbGxh

LCBQLjwvYXV0aG9yPjxhdXRob3I+S2xlc3NlbiwgQy48L2F1dGhvcj48YXV0aG9yPkxlbWJja2Us

IEEuPC9hdXRob3I+PGF1dGhvcj5Cb3JuZW1hbm4sIEwuPC9hdXRob3I+PGF1dGhvcj5EaWNrZW4s

IFYuPC9hdXRob3I+PGF1dGhvcj5IYW1tLCBCLjwvYXV0aG9yPjxhdXRob3I+QmF1a25lY2h0LCBI

LiBDLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBDaGFyaXRlIENhbXB1cyBNaXR0ZSwgQ2hhcml0ZS1Vbml2ZXJz

aXRhdHNtZWRpemluIEJlcmxpbiwgQ2hhcml0ZXBsYXR6IDEsIDEwMTE3LCBCZXJsaW4sIEdlcm1h

bnkuIHBhdHJpY2suaGVpbkBjaGFyaXRlLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+

VmFyaWFiaWxpdHkgb2Ygc2VtaWF1dG9tYXRlZCBsdW5nIG5vZHVsZSB2b2x1bWV0cnkgb24gdWx0

cmFsb3ctZG9zZSBDVDogY29tcGFyaXNvbiB3aXRoIG5vZHVsZSB2b2x1bWV0cnkgb24gc3RhbmRh

cmQtZG9zZSBDVDwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5KIERpZ2l0IEltYWdpbmc8L3NlY29u

ZGFyeS10aXRsZT48YWx0LXRpdGxlPkpvdXJuYWwgb2YgZGlnaXRhbCBpbWFnaW5nPC9hbHQtdGl0

bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+SiBEaWdpdCBJbWFnaW5nPC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+OC0xNzwvcGFnZXM+PHZvbHVtZT4yMzwvdm9sdW1l

PjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3Jk

PjxrZXl3b3JkPkF1dG9tYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+Q29uZmlkZW5jZSBJbnRlcnZh

bHM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdv

cmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5PYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtl

eXdvcmQ+UmFkaWF0aW9uIERvc2FnZTwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1h

Z2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkLyptZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlJldHJvc3BlY3RpdmUgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD4qU29mdHdhcmU8

L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAxMDwveWVhcj48cHViLWRhdGVzPjxkYXRl

PkZlYjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjE2MTgtNzI3WCAoRWxlY3Ryb25p

YykmI3hEOzA4OTctMTg4OSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTg3NzMyNDA8

L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5u

bG0ubmloLmdvdi9wdWJtZWQvMTg3NzMyNDA8L3VybD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGN1

c3RvbTI+MzA0Mzc1MDwvY3VzdG9tMj48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTAwNy9z

MTAyNzgtMDA4LTkxNTctNTwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRl

PjxDaXRlPjxBdXRob3I+R2lldGVtYTwvQXV0aG9yPjxZZWFyPjIwMDY8L1llYXI+PFJlY051bT4y

MTgxPC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTgxPC9yZWMtbnVtYmVyPjxmb3JlaWdu

LWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVjZWZ2MHNk

c2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjM1MjkiPjIxODE8L2tleT48L2ZvcmVpZ24ta2V5cz48

cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRyaWJ1dG9y

cz48YXV0aG9ycz48YXV0aG9yPkdpZXRlbWEsIEguIEEuPC9hdXRob3I+PGF1dGhvcj5XYW5nLCBZ

LjwvYXV0aG9yPjxhdXRob3I+WHUsIEQuPC9hdXRob3I+PGF1dGhvcj52YW4gS2xhdmVyZW4sIFIu

IEouPC9hdXRob3I+PGF1dGhvcj5kZSBLb25pbmcsIEguPC9hdXRob3I+PGF1dGhvcj5TY2hvbHRl

biwgRS48L2F1dGhvcj48YXV0aG9yPlZlcnNjaGFrZWxlbiwgSi48L2F1dGhvcj48YXV0aG9yPktv

aGwsIEcuPC9hdXRob3I+PGF1dGhvcj5PdWRrZXJrLCBNLjwvYXV0aG9yPjxhdXRob3I+UHJva29w

LCBNLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFy

dG1lbnQgb2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudGVyIFV0cmVjaHQsIEhl

aWRlbGJlcmdsYWFuIDEwMCwgMzU4NCBDWCBVdHJlY2h0LCBUaGUgTmV0aGVybGFuZHMuIGguZ2ll

dGVtYUBhenUubmw8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5QdWxtb25hcnkgbm9kdWxl

cyBkZXRlY3RlZCBhdCBsdW5nIGNhbmNlciBzY3JlZW5pbmc6IGludGVyb2JzZXJ2ZXIgdmFyaWFi

aWxpdHkgb2Ygc2VtaWF1dG9tYXRlZCB2b2x1bWUgbWVhc3VyZW1lbnRzPC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+UmFkaW9sb2d5

PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9sb2d5PC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+UmFkaW9s

b2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI1MS03PC9wYWdlcz48dm9s

dW1lPjI0MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZ2Vk

PC9rZXl3b3JkPjxrZXl3b3JkPkF1dG9tYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+SHVtYW5zPC9r

ZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVvcGxhc21zLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5

d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3Jk

PipPYnNlcnZlciBWYXJpYXRpb248L2tleXdvcmQ+PGtleXdvcmQ+T3JnYW4gU2l6ZTwva2V5d29y

ZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVzdWx0czwva2V5d29yZD48a2V5d29yZD5T

b2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypyYWRp

b2dyYXBoeTwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDA2PC95ZWFyPjxwdWIt

ZGF0ZXM+PGRhdGU+T2N0PC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MDAzMy04NDE5

IChQcmludCkmI3hEOzAwMzMtODQxOSAoTGlua2luZyk8L2lzYm4+PGFjY2Vzc2lvbi1udW0+MTY5

MDg2Nzc8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQtdXJscz48dXJsPmh0dHA6Ly93d3cu

bmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTY5MDg2Nzc8L3VybD48L3JlbGF0ZWQtdXJscz48L3Vy

bHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjExNDgvcmFkaW9sLjI0MTEwNTA4NjA8L2Vs

ZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48L0VuZE5vdGU+

ADDIN EN.CITE.DATA (35-40). When deriving the nodule volume difference between two time points, the Reading Paradigm involves direct side-by-side comparison of the current and previous image data at the same time, to reduce interobserver and intraobserver variation. Storing segmentations and measurement results for review at a later date is certainly a useful practice as it can save time and cost. However, segmentation results at both time points shall be inspected visually in three dimensions to make sure that they are of sufficient and comparable accuracy in order to meet the Claims of the Profile. If a previous segmentation is unavailable for viewing, or the previous segmentation is not of comparable accuracy to the current segmentation, segmentation at the comparison time point should be repeated. Methods that calculate volume changes directly without calculating volumes at individual time points are acceptable so long as the results are compliant with the specifications set out by this Profile. Regardless of method, the ability of software to calculate and record volume change relative to baseline for each nodule is recommended.These Image Analysis specifications are intended to apply to a typical user working in the clinical setting (i.e. without extraordinary training or ability). This should be kept in mind by vendors measuring the performance of their tools and sites validating the performance of their installation. Although the performance of some methods may depend on the judgment and skill of the user, it is beyond this Profile to specify the qualifications or experience of the operator. 3.10.2 SpecificationParameterActorRequirementImage Analysis ToolImage AnalystShall use the same Image Analysis Tool (manufacturer, model, version) for measurements at all time points.Segmentation AnalysisImage AnalystShall disqualify nodules with inadequate automated segmentations or nodules with non-comparable segmentations at both time points.Image Display SettingsImage AnalystShall set the Image display setting (window and level) for the segmentation initiation to the same lung appropriate settings for all time points.EquipmentTechnologist/Image AnalystShall use the same measurement system (scanner model, software, and operator) at the two time points.4. Assessment ProceduresTo conform to this Profile, participating staff and equipment (“Actors”) shall support each activity assigned to them in Table 3-1. To support an activity, the actor shall conform to the checklist of requirements (indicated by “shall language”) listed in the specifications table of that activity subsection in Section 3.Although some of the requirements described in Section 3 can be assessed for conformance by direct observation, many of the most critical performance-oriented requirements cannot. Thus the assessment procedures in Section 4 are required.This section begins with a description of the Technical Evaluation Methods (Section 4.1) that will be used to verify the performance requirements of the image acquisition system and the software analysis system. The Equipment Vendor Assessment Procedure (Section 4.2) specifies the compliance procedures that equipment vendors must perform for a specific vendor equipment model to comply with the profile. The Clinical Site Assessment Procedure (Section 4.3) describes the steps needed by a clinical site to achieve compliance with this profile.4.1. Technical Evaluation MethodsThere are two types of equipment used to perform lung nodule measurements in this profile. The technical methods to verify the quality of images produced by the CT scanner and acquisition protocol are outlined in Section 4.1.1. The technical methods to verify the quality of measurements produced by the analysis software is outlined in Section 4.1.2. These methods are then used by equipment vendors (Section 4.2) and clinical sites (Section 4.3) to verify compliance with profile requirements.To date for routine clinical imaging, technical criteria have been typically developed for assessing performance in qualitative imaging applications. With this profile, we are evaluating the imaging relative to assessing performance in quantitative imaging. To reliably measure small changes in the volume of pulmonary nodules is a new and very demanding task requiring a significant upgrading of the conformance process. QIBA describe this transition as moving from a periodic “passive” to an “active” conformance process. This new active conformance process is required to allow the level of measurement accuracy embedding in the Profile claim within a defined statistical confidence interval. The active conformance process involves a prospective test of the CT scanner to be used for the screening evaluation with all of the requisite measurement parameters of the CT set as outlined in this Profile document. Therefore, to validate conformance with the Profile, images are acquired of a standard reference object. The resulting images are sent to the QIBA Conformance evaluation site for review, and after an automated analysis, a comprehensive report of the scanner performance relative to the conformance requirement of the Profile is sent back to the site (typically within the ensuing hour). The overall goal of the process, is to ensure that the CT scanner is performing well enough when set to the specified acquisition parameters, so that it can provide accurate and robust imaging information relative to the stated statistical boundaries of the Profile claim.4.1.1 CT Image Quality CharacteristicsThese methods specify the quality characteristics of reconstructed images for a specific CT scanner and acquisition protocol. Image quality is assessed with a collection of five metrics:Resolution is assessed in terms of the estimated response of the imaging system to a point source (aka point spread function or PSF). The PSF, in turn, is characterized as a Gaussian with a standard deviation of sigma expressed in mm. The PSF is measured both in-plane and along the Z dimension.HU Deviation is a measure of bias that is assessed in terms of the deviation of the mean HU from expected when imaging a material with uniform density.Voxel Noise is a measure of precision that is assessed in terms of the standard deviation of pixel values when imaging a material with uniform density.Edge Enhancement is assessed in terms of the maximum percent increase in HU contrast above expected along the outer edge of an ideal hollow cylinder surrounded by air.Spatial Warping is assessed in terms of the mean squared error of the outer cylindrical surface compared to an ideal cylindrical reference object surface.right220345Figure 1: An illustration with translucency showing the QIBA Quantitative CT Phantom.00Figure 1: An illustration with translucency showing the QIBA Quantitative CT Phantom.The assessor shall scan the QIBA Quantitative CT Phantom using patient-specific settings for an average size patient. Figure 1 shows the overall design of the phantom which contains three image quality assessment modules placed at different distances from scanner isocenter. Within each module is a precision manufactured hollow cylinder made of Delrin plastic with an inner radius of 17.0 mm +- 0.02mm, an outer radius of 28.0 mm +- 0.02mm and a height of 19.0mm +- 0.02mm. Approximately 6.0 mm above the hollow cylinder is a homogeneous Acrylic cylinder with a height of 10.0mm +- 0.1mm and a diameter of 34mm +- 0.1mm. A homogeneous Teflon cylinder is also present 6.0 mm below the hollow cylinder with the same dimensions as the Acrylic cylinder. The phantom also has an iso-centering and alignment target on the outer surface.The scan may be performed at any time in the day after the CT scanner has passed its daily ACR CT accreditation and manufacturer calibration checks. The assessor shall calculate each of the five image quality characteristics at three distances (approximately 0mm, 102mm, 204mm) from scanner isocenter.The assessor shall calculate Resolution by scanning the QIBA Quantitative CT Phantom and determining the 3D Gaussian PSF sigmas that best fit the partial volume voxels near the surface of the hollow cylinder reference object. The resulting X,Y PSF sigma represents the in-plane resolution and the Z PSF sigma represents the Z resolution, both of which are expressed in mm. The 3D PSF sigma ellipsoid volume (PSFv) is calculated as the volume of an ellipsoid with semi-axis lengths of X, Y, and Z PSF sigmas, which is expressed as PSFv=43πσxσyσz . The 3D PSF sigma volume is expressed in mm3 where decreasing values indicate improving resolution. The reference object is a concentric cylinder placed flat on an X-Z scanner plane and the inner surface of concentric cylinder is used to determine both in-plane resolution and Z resolution. An In-plane Point Spread Function sigma can be directly translated to a Modulation Transfer Function at a 50% cutoff frequency (MTF 50) value using the following equation [53]:σxy= -2lnm02πμ0where m0 is the MTF frequency and μ0 is the line pairs per millimeter.The assessor shall calculate HU Deviation for a particular material by first measuring the mean of HU density for voxels that are within a reference object such that partial volume will NOT impact the measurement. Each measured voxel must be > 2*sigma millimeters from the outer surface of the reference object to avoid bias from partial volume artifact. The expected HU density of the material is then subtracted from the mean HU value to arrive at the HU deviation. The two materials measured are air and Delrin plastic and the HU deviation is expressed in HU.The assessor shall calculate Voxel Noise by measuring the standard deviation of HU density for voxels that are within a reference object such that partial volume will NOT impact the measurement. Each measured voxel must be > 2*sigma millimeters from the outer surface of the concentric cylinder to avoid bias from partial volume artifact.The assessor shall calculate Edge Enhancement by measuring the mean HU density along a series of ± 10 degree circular arc shaped sampling paths with each path at varying radial distances from a hollow cylinder center, centered on the X axis, and always inside the hollow cylinder reference object placed nominally flat on an X-Z scanning plane. The maximum of the mean HU densities observed minus the measured mean HU for Air represents the maximum observed contrast due to edge enhancement (EEm). The reference level of edge enhancement (EEr) is calculated as the mean HU density for Delrin minus the measured mean HU for Air. Once these are determined the final Edge Enhancement value is then calculated as EE= EEmEEr-1.The assessor shall calculate Spatial Warping by computing the mean square error (MSE) of the outer cylindrical surface of the hollow Delrin cylinder with respect to the surface of an ideal geometric cylinder at that location. The geometry of a perfect uncapped cylinder is used for the ideal reference object surface and marching cubes with a threshold halfway between the measured mean Delrin HU density and the measured mean Air HU density is used for the outer cylindrical surface.4.1.2 Nodule Analysis Software CharacteristicsThese methods specify the minimum quality characteristics of a nodule measurement software application. Measurement quality is assessed with two metrics:Measurement Bias is the deviation of the mean value from its true value for a set of volumetric measurements. This metric is assessed by measuring the volume of repeat scans of geometric objects, each with a manufactured and verified volume, where the objects have varying size and shape.Coefficient of Variation (CV) is a measure of variation for repeated volumetric measurements of an object. It is calculated as the ratio of the standard deviation to the mean for a set of measurements. This metric is assessed by measuring the volume of short-time interval repeat scans of nodules, where the nodules have varying size, shape, and attachments as well as by measuring the volume of geometric object scans.The assessor shall obtain two sets of CT scans from the QIBA quality assurance site x.. A “phantom nodule dataset” contains 10 CT scans of a QIBA provided phantom with numerous geometric objects embedded in foam. A “clinical nodule dataset” contains 5 repeat CT scans of 14 different lung nodules of varying shape and size all acquired within a short time interval such that the amount of volumetric change must be zero.Two spreadsheet files are also provided at the x. website. An “object location file” in *.xls format contains the RAS coordinate locations of the geometric objects in the “phantom nodule dataset”. A “measurement reporting file” in *.xls format is also provided with a volumetric measurement data entry location for each object to be measured.The assessor shall load each CT series in the “phantom nodule dataset” and the “clinical nodule dataset” into the nodule measurement software and obtain a volumetric measurement. The assessor shall enter each volumetric measurement into the “measurement reporting file” which will automatically verify that the values reported are compliant. This will specifically verify that the bias for each volumetric measurement of a geometric object is <= 5% of the object’s manufactured volume. The spreadsheet will also verify that the coefficient of variation for both geometric objects and repeat lung nodules does not exceed the values in Table 1. The assessor shall also enter the analysis software name and version number into the “measurement reporting file” and upload the file to the QIBA quality assurance site x.. The specific version of the lung nodule analysis software will be considered compliant when at least two independent clinical sites have successfully performed this procedure.Sites can follow the vendor equipment procedure to verify compliance of software that is not on the list.4.2. Equipment Vendor Assessment ProceduresScanner and analysis software vendors will follow the assessment procedures in this section for a specific model of equipment to achieve conformance with this profile. Although vendor assessment procedures will use some of the same methods and tools as clinical sites, the assessment of vendor equipment is designed to be more rigorous. The combination of thorough testing of equipment by vendors along with numerous field test assessments by clinical sites is intended to help ensure that the claims of this profile will be met.4.2.1 Scanner Vendor Assessment ProcedureScanner vendors will first establish a set of preferred protocols (i.e. equipment settings) for clinical sites to use on their equipment. Because slight modifications of a protocol setting (e.g. use of a different mA setting for each patient) is permitted in this profile, scanner vendors are required to verify that the requirements of this profile will still be met even when scanning with common protocol variations. A Design of Experiments (DOE) approach will be used to evaluate the performance of a scanner under varying conditions from each preferred protocol setting.The scanner vendor will perform the following steps to demonstrate that a specific scanner model is conformant with this profile:Identify and use a single clinically operating CT scanner for the specific model being evaluated. Define one or more CT acquisition protocols that will be communicated to clinical sites as a proposed vendor recommended acquisition protocol for this model scanner. Each proposed vendor recommended acquisition protocol must meet the requirements of this profile and obtain a passing automated image quality report according to the steps in section 4.3.1. For each vendor recommended acquisition protocol, a 24 full factorial DOE will be defined and performed with variation on mAs, field of view, pitch, and iterative recon setting (if appropriate, table height if not). The DOE will also have three repeat acquisitions for the recommended acquisition protocol. For example, a recommended CT acquisition protocol with the following settings:mAs40kVp100Rotation Time (s)0.50Filed of View (cm)35.0Pitch1.50Slice Thickness (mm)1.00Slice Spacing (mm)0.75Reconstruction KernelI40-4Table HeightCenteredTable 2: Acquisition protocol example.Will have a DOE with the following 19 experiments consisting of 3 repeat CT scans of the recommended CT acquisition protocol (A,B,C) and 16 CT scans that systematically vary mAs, FOV, Pitch, and an iterative reconstruction setting:Experiment #mAsFOVPitchIterative Recon SettingNotesA4030.01.50I40-4Repetition 1013030.01.25I40-3[ -, -. -, - ]023030.01.25I40-5[ -. -, -, + ]033030.01.75I40-3[ -. -, +, - ]043030.01.75I40-5[ -, -, +, + ]053040.01.25I40-3[ -, +, -, - ]063040.01.25I40-5[ -, +, -, + ]073040.01.75I40-3[ -, +, +, - ]083040.01.75I40-5 [ -, +, +, + ]B4035.01.50I40-4Repetition 2095030.01.25I40-3[ +, -. -, - ]105030.01.25I40-5[ +. -, -, + ]115030.01.75I40-3[ +. -, +, - ]125030.01.75I40-5[ +, -, +, + ]135040.01.25I40-3[ +, +, -, - ]145040.01.25I40-5[ +, +, -, + ]155040.01.75I40-3[ +, +, +, - ]165040.01.75I40-5 [ +, +, +, + ]C4035.01.50I40-4Repetition 3Table 3: Design of experiments example.For each experiment in the DOE the scanner vendor must meet the requirements of this profile and obtain a passing automated image quality report according to the steps in section 4.3.1. Vendors will be provided a facility to upload multiple scans for automated analysis.The scanner model and recommended acquisition protocol will be considered compliant with the profile when all experiments in the full DOE have obtained a passing image quality report. The variation tested in the DOE defines an operating envelope that the scanner model has been shown to support. Vendors may wish to repeat DOE experiments to verify compliance with a wider operating envelope and this may include the addition of DOE variables.Each CT scanner model and recommended vendor acquisition protocol pair that completes these steps will then each be listed by QIBA on x. as a verified conformant CT scanner model and a recommended acquisition protocol.4.2.2 Analysis Software Vendor Assessment ProcedureAnalysis software will be run against a set of testing datasets to assess that the volumetric measurement software performs at a minimum level of performance. Datasets will include phantom scans containing geometric objects of known volumes (i.e. phantom nodule dataset) as well as clinical zero change clinical nodule datasets (i.e. clinical nodule dataset). The phantom nodule dataset and the clinical nodule dataset will be available at x. for download. In addition, a template analysis software measurement spreadsheet for measurement findings will be available at x. that provides the RAS location and data placeholders for software calculated measurements.Analysis software conformance testing is specific to the name and version number of an analysis software system available to clinical sites for the measurement of CT lung nodules. Analysis software testing of the phantom nodule dataset will consist of the following steps:Sequentially load each longitudinal CT series in the phantom nodule dataset into the analysis software and perform automated or semi-automated segmentation of the nodule(s).Place each calculated volume measurement into the analysis software measurement spreadsheet. As measurements are placed into the spreadsheet the bias and coefficient of variation of each simulated nodule will be automatically calculated by the spreadsheet. After all measurements have been calculated all bias and coefficient of variation values must be within acceptable limits for this profile. The phantom nodule dataset measurements must produce coefficients of variation no greater than those listed in Table 1. Volume bias may not exceed 5% of the phantom nodule manufactured volume.Analysis software testing of the clinical nodule dataset will consist of the following steps:Sequentially load each longitudinal CT series in the clinical nodule dataset into the analysis software and perform automated or semi-automated segmentation of the nodule(s).Place each calculated volume measurement into the analysis software measurement spreadsheet. As measurements are placed into the spreadsheet the coefficient of variation of each clinical nodule will be automatically calculated by the spreadsheet. After all measurements have been calculated all coefficient of variation values must be within acceptable limits for this profile. The clinical nodule dataset measurements must produce coefficients of variation no greater than those listed in Table 1.Analysis software (including version number) that completes these steps will then be listed by QIBA on x. as a verified conformant nodule analysis software. 4.3. Clinical Site Assessment ProcedureConformance to this profile is designed to be performed by a clinical site by following the steps below. Detailed technical information on profile requirements is provided in Section 3.Technical assessment at a clinical site is performed in two main steps. The Technical Assessment To Prepare For Lung Nodule Measurement (Section 4.3.1) verifies that the vendor equipment to be used at the clinical site, including the image acquisition protocol, complies with this profile. The Performing Lung Nodule Measurement (Section 4.3.2) outlines the steps that need to be verified while lung nodule analysis is being performed.4.3.1 Preparing For Lung Nodule Measurement(1) CT Scanner and Lung Nodule Analysis Software VerificationFor each analysis software application to be used for lung cancer screening nodule measurement:Verify that your CT scanner manufacturer and model name is on this QIBA verified list at x..Verify that your software name, including version number, is on this QIBA verified list at x.. (2) CT QA and Lung Screening Protocol VerificationFor each CT scanner to be used for lung cancer screening nodule measurement:Verify that your CT scanner is consistently following ACR CT accreditation and manufacturer installation and maintenance requirements.Establish a CT lung cancer screening protocol and save it on the CT scanner. You may use your existing lung screening protocol or pick a protocol from a continuously updated list provided by QIBA at x..CT scan the QIBA CT lung nodule phantom with the saved CT lung screening protocol.Submit the CT lung nodule phantom scan to x. and obtain a passing automated image quality report. If you do not receive a passing report, repeat steps 2(b) to 2(d) until a passing report is obtained.4.3.2 Performing Lung Nodule Measurement(1) CT Data Acquisition, Lung Nodule, and Segmentation VerificationFor each CT lung cancer screening and solid lung nodule follow-up CT scan:Verify that the patient did not receive IV contrast as part of the CT study.Visually verify that the nodule is solid, not attached to large vessels or other structures, has a largest diameter between 6mm and 10mm, and that the saved CT lung nodule protocol was used at all nodule scanning time points to be volume measured.Visually verify that significant artifacts (e.g. motion, streaking) are not present and that image noise is not excessive at the location of the solid nodule to be measured.Visually verify that the measurement of the solid nodule is free of segmentation issues. (2) Obtain Volumetric Nodule Measurement GuidanceFor each series of CT lung nodule measurements consisting of one or more time points:Use the QIBA lung nodule profile on-line calculator at x. for guidance on levels of volumetric measurement error for each lung nodule measurement and change measurement.References ADDIN EN.REFLIST 1.Henschke CI, Yankelevitz DF, Libby DM, Pasmantier MW, Smith JP, Miettinen OS. Survival of patients with stage I lung cancer detected on CT screening. N Engl J Med. 2006; 355(17):1763-71.2.Aberle DR, Adams AM, Berg CD, et al. Reduced lung-cancer mortality with low-dose computed tomographic screening. N Engl J Med. 2011; 365(5):395-409.3.Yankelevitz DF, Reeves AP, Kostis WJ, Zhao B, Henschke CI. Small pulmonary nodules: volumetrically determined growth rates based on CT evaluation. Radiology. 2000; 217(1):251-6.4.Bolte H, Jahnke T, Schafer FK, et al. Interobserver-variability of lung nodule volumetry considering different segmentation algorithms and observer training levels. Eur J Radiol. 2007; 64(2):285-95.5.Gierada DS, Pilgram TK, Ford M, et al. Lung cancer: interobserver agreement on interpretation of pulmonary findings at low-dose CT screening. Radiology. 2008; 246(1):265-72.6.van Klaveren RJ, Oudkerk M, Prokop M, et al. Management of lung nodules detected by volume CT scanning. N Engl J Med. 2009; 361(23):2221-9.7.Singh S, Pinsky P, Fineberg NS, et al. Evaluation of reader variability in the interpretation of follow-up CT scans at lung cancer screening. Radiology. 2011; 259(1):263-70.8.Petrick N, Kim HJ, Clunie D, et al. Comparison of 1D, 2D, and 3D nodule sizing methods by radiologists for spherical and complex nodules on thoracic CT phantom images. Acad Radiol. 2014; 21(1):30-40.9.Mulshine JL, Gierada DS, Armato SG, 3rd, et al. Role of the Quantitative Imaging Biomarker Alliance in optimizing CT for the evaluation of lung cancer screen-detected nodules. Journal of the American College of Radiology : JACR. 2015; 12(4):390-5.10.Das M, Muhlenbruch G, Katoh M, et al. Automated volumetry of solid pulmonary nodules in a phantom: accuracy across different CT scanner technologies. Invest Radiol. 2007; 42(5):297-302.11.Ravenel JG, Leue WM, Nietert PJ, Miller JV, Taylor KK, Silvestri GA. Pulmonary nodule volume: effects of reconstruction parameters on automated measurements--a phantom study. Radiology. 2008; 247(2):400-8.12.Goo JM, Tongdee T, Tongdee R, Yeo K, Hildebolt CF, Bae KT. Volumetric measurement of synthetic lung nodules with multi-detector row CT: effect of various image reconstruction parameters and segmentation thresholds on measurement accuracy. Radiology. 2005; 235(3):850-6.13.Chen B, Barnhart H, Richard S, Colsher J, Amurao M, Samei E. Quantitative CT: technique dependence of volume estimation on pulmonary nodules. Physics in medicine and biology. 2012; 57(5):1335-48.14.Larici AR, Storto ML, Torge M, et al. Automated volumetry of pulmonary nodules on multidetector CT: influence of slice thickness, reconstruction algorithm and tube current. Preliminary results. La Radiologia medica. 2008; 113(1):29-42.15.Xie X, Willemink MJ, de Jong PA, et al. Small irregular pulmonary nodules in low-dose CT: observer detection sensitivity and volumetry accuracy. AJR Am J Roentgenol. 2014; 202(3):W202-9.16.Willemink MJ, Leiner T, Budde RP, et al. Systematic error in lung nodule volumetry: effect of iterative reconstruction versus filtered back projection at different CT parameters. AJR Am J Roentgenol. 2012; 199(6):1241-6.17.Wielputz MO, Lederlin M, Wroblewski J, et al. CT volumetry of artificial pulmonary nodules using an ex vivo lung phantom: influence of exposure parameters and iterative reconstruction on reproducibility. Eur J Radiol. 2013; 82(9):1577-83.18.Chen B, Barnhart H, Richard S, Robins M, Colsher J, Samei E. Volumetric quantification of lung nodules in CT with iterative reconstruction (ASiR and MBIR). Med Phys. 2013; 40(11):111902.19.Wormanns D, Kohl G, Klotz E, et al. Volumetric measurements of pulmonary nodules at multi-row detector CT: in vivo reproducibility. Eur Radiol. 2004; 14(1):86-92.20.Goodman LR, Gulsun M, Washington L, Nagy PG, Piacsek KL. Inherent variability of CT lung nodule measurements in vivo using semiautomated volumetric measurements. AJR Am J Roentgenol. 2006; 186(4):989-94.21.Gietema HA, Schaefer-Prokop CM, Mali WP, Groenewegen G, Prokop M. Pulmonary nodules: Interscan variability of semiautomated volume measurements with multisection CT-- influence of inspiration level, nodule size, and segmentation performance. Radiology. 2007; 245(3):888-94.22.Rampinelli C, De Fiori E, Raimondi S, Veronesi G, Bellomi M. In vivo repeatability of automated volume calculations of small pulmonary nodules with CT. AJR Am J Roentgenol. 2009; 192(6):1657-61.23.de Hoop B, Gietema H, van Ginneken B, Zanen P, Groenewegen G, Prokop M. A comparison of six software packages for evaluation of solid lung nodules using semi-automated volumetry: what is the minimum increase in size to detect growth in repeated CT examinations. Eur Radiol. 2009; 19(4):800-8.24.Marchiano A, Calabro E, Civelli E, et al. Pulmonary nodules: volume repeatability at multidetector CT lung cancer screening. Radiology. 2009; 251(3):919-25.25.Ko JP, Berman EJ, Kaur M, et al. Pulmonary Nodules: growth rate assessment in patients by using serial CT and three-dimensional volumetry. Radiology. 2012; 262(2):662-71.26.ACR-STR. ACR-STR practice parameter for the performance and reporting of lung cancer screening thoracic computed tomography (CT). 2014.27.Goo JM, Kim KG, Gierada DS, Castro M, Bae KT. Volumetric measurements of lung nodules with multi-detector row CT: effect of changes in lung volume. Korean J Radiol. 2006; 7(4):243-8.28.Petkovska I, Brown MS, Goldin JG, et al. The effect of lung volume on nodule size on CT. Acad Radiol. 2007; 14(4):476-85.29.Coenen A, Honda O, van der Jagt EJ, Tomiyama N. Computer-assisted solid lung nodule 3D volumetry on CT: influence of scan mode and iterative reconstruction: a CT phantom study. Japanese journal of radiology. 2013; 31(10):677-84.30.Lee CH, Goo JM, Ye HJ, et al. Radiation dose modulation techniques in the multidetector CT era: from basics to practice. Radiographics. 2008; 28(5):1451-9.31.Nietert PJ, Ravenel JG, Leue WM, et al. Imprecision in automated volume measurements of pulmonary nodules and its effect on the level of uncertainty in volume doubling time estimation. Chest. 2009; 135(6):1580-7.32.Gavrielides MA, Zeng R, Myers KJ, Sahiner B, Petrick N. Benefit of overlapping reconstruction for improving the quantitative assessment of CT lung nodule volume. Acad Radiol. 2013; 20(2):173-80.33.Willemink MJ, de Jong PA, Leiner T, et al. Iterative reconstruction techniques for computed tomography Part 1: technical principles. Eur Radiol. 2013; 23(6):1623-31.34.Willemink MJ, Borstlap J, Takx RA, et al. The effects of computed tomography with iterative reconstruction on solid pulmonary nodule volume quantification. PloS one. 2013; 8(2):e58053.35.Revel MP, Lefort C, Bissery A, et al. Pulmonary nodules: preliminary experience with three-dimensional evaluation. Radiology. 2004; 231(2):459-66.36.Petrou M, Quint LE, Nan B, Baker LH. Pulmonary nodule volumetric measurement variability as a function of CT slice thickness and nodule morphology. AJR Am J Roentgenol. 2007; 188(2):306-12.37.Wang Y, van Klaveren RJ, van der Zaag-Loonen HJ, et al. Effect of nodule characteristics on variability of semiautomated volume measurements in pulmonary nodules detected in a lung cancer screening program. Radiology. 2008; 248(2):625-31.38.Hein PA, Romano VC, Rogalla P, et al. Linear and volume measurements of pulmonary nodules at different CT dose levels - intrascan and interscan analysis. RoFo : Fortschritte auf dem Gebiete der Rontgenstrahlen und der Nuklearmedizin. 2009; 181(1):24-31.39.Hein PA, Romano VC, Rogalla P, et al. Variability of semiautomated lung nodule volumetry on ultralow-dose CT: comparison with nodule volumetry on standard-dose CT. J Digit Imaging. 2010; 23(1):8-17.40.Gietema HA, Wang Y, Xu D, et al. Pulmonary nodules detected at lung cancer screening: interobserver variability of semiautomated volume measurements. Radiology. 2006; 241(1):251-7.41.QIBA-Performance-Working-Group. Review of Statistical Methods for Technical Performance Assessment. Submitted to SMMR. 2014.42.Bland JM, Altman DG. Statistical methods for assessing agreement between two methods of clinical measurement. Lancet. 1986; 1(8476):307-10.43.Bland JM, Altman DG. Measuring agreement in method comparison studies. Statistical methods in medical research. 1999; 8(2):135-60.44.Barnhart HX, Barboriak DP. Applications of the repeatability of quantitative imaging biomarkers: A review of statistical analysis of repeat data sets. Translational Oncology. 2009; 2(4):231-5.45.Lin LI. A concordance correlation coefficient to evaluate reproducibility. Biometrics. 1989; 45(1):255-68.46.CT-Volumetry-Technical-Committee. QIBA Profile: CT Tumor Volume Change v2.2 Reviewed Draft (Publicly Reviewed Version) Available at: SK, Zou KH, Wells WM. Simultaneous truth and performance level estimation (STAPLE): an algorithm for the validation of image segmentation. IEEE Trans Med Imaging. 2004; 23(7):903-21.48.Rohlfing T, Russakoff DB, Maurer CR, Jr. Performance-based classifier combination in atlas-based image segmentation using expectation-maximization parameter estimation. IEEE Trans Med Imaging. 2004; 23(8):983-94.49.Jaccard P. The distribution of the flora in the alpine zone. New Phytologist. 1912; 11:37-50.50.Sorensen R. A method of establishing groups of equal amplitude in plant sociology based on similarity of species and its application to analyses of the vegetation on Danish commons. Nordisk medicin. 1948; 40(51):2389.51.Dice L. Measures of the Amount of Ecologic Association Between Species. Ecology. 1945; 26(3):297-302.52.Henschke C, Yankelevitz D, Yip, R, Archer V, Zahlmann G, Krishnan K, Helba B, Avila R. Tumor volume measurement error using computed tomography imaging in a phase II clinical trial in lung cancer. J. Med. Imag. 3(3), 035505 (Sep 20, 2016).53.Wang G, Cheng PC, Vannier MW. Spiral CT refines temporal bone imaging. Diagnostic Imag., vol 15, pp 116-121, 1993.Additional References:52.Gavrielides MA, Li Q, Zeng R, Myers KJ, Sahiner B, Petrick N. Minimum detectable change in lung nodule volume in a phantom CT study. Acad Radiol. 2013; 20(11):1364-70.53.Bolte H, Riedel C, Jahnke T, et al. Reproducibility of computer-aided volumetry of artificial small pulmonary nodules in ex vivo porcine lungs. Invest Radiol. 2006; 41(1):28-35.54.Bolte H, Riedel C, Muller-Hulsbeck S, et al. Precision of computer-aided volumetry of artificial small solid pulmonary nodules in ex vivo porcine lungs. Br J Radiol. 2007; 80(954):414-21.55.Wang Y, de Bock GH, van Klaveren RJ, et al. Volumetric measurement of pulmonary nodules at low-dose chest CT: effect of reconstruction setting on measurement variability. Eur Radiol. 2010; 20(5):1180-7.56.Bolte H, Riedel C, Knoss N, et al. Computed tomography-based lung nodule volumetry--do optimized reconstructions of routine protocols achieve similar accuracy, reproducibility and interobserver variability to that of special volumetry protocols? RoFo : Fortschritte auf dem Gebiete der Rontgenstrahlen und der Nuklearmedizin. 2007; 179(3):276-81.57.de Jong PA, Leiner T, Lammers JW, Gietema HA. Can low-dose unenhanced chest CT be used for follow-up of lung nodules? AJR Am J Roentgenol. 2012; 199(4):777-80.58.Christe A, Torrente JC, Lin M, et al. CT screening and follow-up of lung nodules: effects of tube current-time setting and nodule size and density on detectability and of tube current-time setting on apparent size. AJR Am J Roentgenol. 2011; 197(3):623-30.59.Honda O, Sumikawa H, Johkoh T, et al. Computer-assisted lung nodule volumetry from multi-detector row CT: influence of image reconstruction parameters. Eur J Radiol. 2007; 62(1):106-13.60.Young S, Kim HJ, Ko MM, Ko WW, Flores C, McNitt-Gray MF. Variability in CT lung-nodule volumetry: Effects of dose reduction and reconstruction methods. Med Phys. 2015; 42(5):2679-89.61.Ashraf H, de Hoop B, Shaker SB, et al. Lung nodule volumetry: segmentation algorithms within the same software package cannot be used interchangeably. Eur Radiol. 2010; 20(8):1878-85.62.Christe A, Bronnimann A, Vock P. Volumetric analysis of lung nodules in computed tomography (CT): comparison of two different segmentation algorithm softwares and two different reconstruction filters on automated volume calculation. Acta Radiol. 2014; 55(1):54-61.63.Zhao YR, Ooijen PM, Dorrius MD, et al. Comparison of three software systems for semi-automatic volumetry of pulmonary nodules on baseline and follow-up CT examinations. Acta Radiol. 2013; 55(6):691-8.64.Gavrielides MA, Kinnard LM, Myers KJ, Petrick N. Noncalcified lung nodules: volumetric assessment with thoracic CT. Radiology. 2009; 251(1):26-37.65.Marten K, Engelke C. Computer-aided detection and automated CT volumetry of pulmonary nodules. Eur Radiol. 2007; 17(4):888-901.66.Boll DT, Gilkeson RC, Fleiter TR, Blackham KA, Duerk JL, Lewin JS. Volumetric assessment of pulmonary nodules with ECG-gated MDCT. AJR Am J Roentgenol. 2004; 183(5):1217-23.PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5HYXZyaWVsaWRlczwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTczPC9SZWNOdW0+PERpc3BsYXlUZXh0Pig1Mi02Nik8L0Rpc3BsYXlUZXh0

PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE3MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkg

YXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGlt

ZXN0YW1wPSIxNDQxNTYxNzUxIj4yMTczPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5h

bWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+

PGF1dGhvcj5HYXZyaWVsaWRlcywgTS4gQS48L2F1dGhvcj48YXV0aG9yPkxpLCBRLjwvYXV0aG9y

PjxhdXRob3I+WmVuZywgUi48L2F1dGhvcj48YXV0aG9yPk15ZXJzLCBLLiBKLjwvYXV0aG9yPjxh

dXRob3I+U2FoaW5lciwgQi48L2F1dGhvcj48YXV0aG9yPlBldHJpY2ssIE4uPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGl2aXNpb24gb2YgSW1hZ2luZyBh

bmQgQXBwbGllZCBNYXRoZW1hdGljcywgT2ZmaWNlIG9mIFNjaWVuY2UgYW5kIEVuZ2luZWVyaW5n

IExhYm9yYXRvcmllcywgQ2VudGVyIGZvciBEZXZpY2VzIGFuZCBSYWRpb2xvZ2ljYWwgSGVhbHRo

LCBVLlMuIEZvb2QgYW5kIERydWcgQWRtaW5pc3RyYXRpb24sIDEwOTAzIE5ldyBIYW1wc2hpcmUg

QXZlbnVlLCBCbGRnLiA2MiwgUm0uNDExNCwgU2lsdmVyIFNwcmluZywgTUQgMjA5OTMuIEVsZWN0

cm9uaWMgYWRkcmVzczogbWFyaW9zLmdhdnJpZWxpZGVzQGZkYS5oaHMuZ292LjwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPk1pbmltdW0gZGV0ZWN0YWJsZSBjaGFuZ2UgaW4gbHVuZyBub2R1

bGUgdm9sdW1lIGluIGEgcGhhbnRvbSBDVCBzdHVkeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5B

Y2FkIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWNhZGVtaWMgcmFkaW9sb2d5

PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QWNhZCBSYWRpb2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2Fk

ZW1pYyBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTM2NC03

MDwvcGFnZXM+PHZvbHVtZT4yMDwvdm9sdW1lPjxudW1iZXI+MTE8L251bWJlcj48a2V5d29yZHM+

PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwva2V5

d29yZD48a2V5d29yZD5ST0MgQ3VydmU8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIElt

YWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC9tZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5

d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+

PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODc4LTQwNDYgKEVsZWN0cm9uaWMpJiN4RDsxMDc2

LTYzMzIgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI0MTE5MzQ4PC9hY2Nlc3Npb24t

bnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3Yv

cHVibWVkLzI0MTE5MzQ4PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJl

c291cmNlLW51bT4xMC4xMDE2L2ouYWNyYS4yMDEzLjA4LjAxOTwvZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Qm9sdGU8L0F1dGhvcj48WWVhcj4y

MDA2PC9ZZWFyPjxSZWNOdW0+MjE3NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE3NDwv

cmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZk

dmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxNTYxOTE3Ij4yMTc0PC9r

ZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3Jl

Zi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Cb2x0ZSwgSC48L2F1dGhvcj48

YXV0aG9yPlJpZWRlbCwgQy48L2F1dGhvcj48YXV0aG9yPkphaG5rZSwgVC48L2F1dGhvcj48YXV0

aG9yPkluYW4sIE4uPC9hdXRob3I+PGF1dGhvcj5GcmVpdGFnLCBTLjwvYXV0aG9yPjxhdXRob3I+

S29obCwgRy48L2F1dGhvcj48YXV0aG9yPkhlbGxlciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRl

cmVyLCBKLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRl

cGFydG1lbnQgb2YgRGlhZ25vc3RpYyBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgU2No

bGVzd2lnLUhvbHN0ZWluIENhbXB1cyBLaWVsLCBHZXJtYW55LiBIZW5kcmlrYm9sdGVAcmFkLnVu

aS1raWVsLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+UmVwcm9kdWNpYmlsaXR5IG9m

IGNvbXB1dGVyLWFpZGVkIHZvbHVtZXRyeSBvZiBhcnRpZmljaWFsIHNtYWxsIHB1bG1vbmFyeSBu

b2R1bGVzIGluIGV4IHZpdm8gcG9yY2luZSBsdW5nczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5J

bnZlc3QgUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5JbnZlc3RpZ2F0aXZlIHJh

ZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkludmVz

dCBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5JbnZlc3RpZ2F0aXZlIFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2Fs

PjxwYWdlcz4yOC0zNTwvcGFnZXM+PHZvbHVtZT40MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVy

PjxrZXl3b3Jkcz48a2V5d29yZD5BbmFseXNpcyBvZiBWYXJpYW5jZTwva2V5d29yZD48a2V5d29y

ZD5BbmltYWxzPC9rZXl3b3JkPjxrZXl3b3JkPkluIFZpdHJvIFRlY2huaXF1ZXM8L2tleXdvcmQ+

PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBo

YW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoaWMgSW1hZ2UgSW50

ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVj

aWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlN0YXRpc3RpY3MsIE5vbnBhcmFtZXRyaWM8L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8

L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNjwveWVhcj48cHViLWRhdGVzPjxkYXRl

PkphbjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjAwMjAtOTk5NiAoUHJpbnQpJiN4

RDswMDIwLTk5OTYgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE2MzU1MDM3PC9hY2Nl

c3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5p

aC5nb3YvcHVibWVkLzE2MzU1MDM3PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkJvbHRlPC9BdXRob3I+PFllYXI+MjAwNzwvWWVhcj48UmVj

TnVtPjIxNzU8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzU8L3JlYy1udW1iZXI+PGZv

cmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNl

ZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MTkzOCI+MjE3NTwva2V5PjwvZm9yZWlnbi1r

ZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJp

YnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sdGUsIEguPC9hdXRob3I+PGF1dGhvcj5SaWVkZWws

IEMuPC9hdXRob3I+PGF1dGhvcj5NdWxsZXItSHVsc2JlY2ssIFMuPC9hdXRob3I+PGF1dGhvcj5G

cmVpdGFnLVdvbGYsIFMuPC9hdXRob3I+PGF1dGhvcj5Lb2hsLCBHLjwvYXV0aG9yPjxhdXRob3I+

RHJld3MsIFQuPC9hdXRob3I+PGF1dGhvcj5IZWxsZXIsIE0uPC9hdXRob3I+PGF1dGhvcj5CaWVk

ZXJlciwgSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIERpYWdub3N0aWMgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IEhvc3BpdGFsIFNj

aGxlc3dpZy1Ib2xzdGVpbiBDYW1wdXMgS2llbCwgQXJub2xkLUhlbGxlciBTdHJhc3NlIDksIDI0

MTA1IEtpZWwsIEdlcm1hbnkuIGhlbmRyaWtib2x0ZUByYWQudW5pLWtpZWwuZGU8L2F1dGgtYWRk

cmVzcz48dGl0bGVzPjx0aXRsZT5QcmVjaXNpb24gb2YgY29tcHV0ZXItYWlkZWQgdm9sdW1ldHJ5

IG9mIGFydGlmaWNpYWwgc21hbGwgc29saWQgcHVsbW9uYXJ5IG5vZHVsZXMgaW4gZXggdml2byBw

b3JjaW5lIGx1bmdzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkJyIEogUmFkaW9sPC9zZWNvbmRh

cnktdGl0bGU+PGFsdC10aXRsZT5UaGUgQnJpdGlzaCBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0

LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkJyIEogUmFkaW9sPC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NDE0LTIxPC9wYWdlcz48dm9sdW1lPjgwPC92b2x1

bWU+PG51bWJlcj45NTQ8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QW5pbWFsczwva2V5d29y

ZD48a2V5d29yZD5MdW5nLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywg

SW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRp

b24sIENvbXB1dGVyLUFzc2lzdGVkL21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8

L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1S

YXkgQ29tcHV0ZWQvaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+

PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5KdW48L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNzQ4LTg4MFggKEVsZWN0cm9uaWMpJiN4RDswMDA3LTEyODUg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3Njg0MDc1PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3Njg0MDc1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMjU5L2Jqci8yMzkzMzI2ODwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNv

cmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2FuZzwvQXV0aG9yPjxZZWFyPjIwMTA8L1llYXI+PFJl

Y051bT4yMTc2PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTc2PC9yZWMtbnVtYmVyPjxm

b3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVj

ZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjIzODUiPjIxNzY8L2tleT48L2ZvcmVpZ24t

a2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRy

aWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldhbmcsIFkuPC9hdXRob3I+PGF1dGhvcj5kZSBCb2Nr

LCBHLiBILjwvYXV0aG9yPjxhdXRob3I+dmFuIEtsYXZlcmVuLCBSLiBKLjwvYXV0aG9yPjxhdXRo

b3I+dmFuIE9veWVuLCBQLjwvYXV0aG9yPjxhdXRob3I+VHVra2VyLCBXLjwvYXV0aG9yPjxhdXRo

b3I+WmhhbywgWS48L2F1dGhvcj48YXV0aG9yPkRvcnJpdXMsIE0uIEQuPC9hdXRob3I+PGF1dGhv

cj5Qcm9lbmNhLCBSLiBWLjwvYXV0aG9yPjxhdXRob3I+UG9zdCwgVy4gSi48L2F1dGhvcj48YXV0

aG9yPk91ZGtlcmssIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFk

ZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIg

R3JvbmluZ2VuLCBVbml2ZXJzaXR5IG9mIEdyb25pbmdlbiwgSGFuemVwbGVpbiAxLCA5NzAwIFJC

LCBHcm9uaW5nZW4sIFRoZSBOZXRoZXJsYW5kcy48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRs

ZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50IG9mIHB1bG1vbmFyeSBub2R1bGVzIGF0IGxvdy1kb3Nl

IGNoZXN0IENUOiBlZmZlY3Qgb2YgcmVjb25zdHJ1Y3Rpb24gc2V0dGluZyBvbiBtZWFzdXJlbWVu

dCB2YXJpYWJpbGl0eTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5FdXIgUmFkaW9sPC9zZWNvbmRh

cnktdGl0bGU+PGFsdC10aXRsZT5FdXJvcGVhbiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxl

cz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9k

aWNhbD48cGFnZXM+MTE4MC03PC9wYWdlcz48dm9sdW1lPjIwPC92b2x1bWU+PG51bWJlcj41PC9u

dW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8q

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3

b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQv

Km1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tl

eXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3

b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUv

KnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVk

LyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTA8L3llYXI+PHB1

Yi1kYXRlcz48ZGF0ZT5NYXk8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNDMyLTEw

ODQgKEVsZWN0cm9uaWMpJiN4RDswOTM4LTc5OTQgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24t

bnVtPjE5OTIxMjA0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE5OTIxMjA0PC91cmw+PC9yZWxhdGVkLXVy

bHM+PC91cmxzPjxjdXN0b20yPjI4NTA1Mjc8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2Ut

bnVtPjEwLjEwMDcvczAwMzMwLTAwOS0xNjM0LTk8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkJvbHRlPC9BdXRob3I+PFllYXI+MjAwNzwvWWVh

cj48UmVjTnVtPjIxNzc8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzc8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MjQ4NyI+MjE3Nzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sdGUsIEguPC9hdXRob3I+PGF1dGhvcj5S

aWVkZWwsIEMuPC9hdXRob3I+PGF1dGhvcj5Lbm9zcywgTi48L2F1dGhvcj48YXV0aG9yPkZyZWl0

YWcsIFMuPC9hdXRob3I+PGF1dGhvcj5Ib2ZmbWFubiwgQi48L2F1dGhvcj48YXV0aG9yPkhlbGxl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjwvYXV0aG9ycz48L2Nv

bnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPktsaW5payBmdXIgRGlhZ25vc3Rpc2NoZSBSYWRpb2xv

Z2llLCBVbml2ZXJzaXRhdHNrbGluaWt1bSBTY2hsZXN3aWctSG9sc3RlaW4sIENhbXB1cyBLaWVs

LiBoZW5kcmlrYm9sdGVAcmFkLnVuaS1raWVsLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0

bGU+Q29tcHV0ZWQgdG9tb2dyYXBoeS1iYXNlZCBsdW5nIG5vZHVsZSB2b2x1bWV0cnktLWRvIG9w

dGltaXplZCByZWNvbnN0cnVjdGlvbnMgb2Ygcm91dGluZSBwcm90b2NvbHMgYWNoaWV2ZSBzaW1p

bGFyIGFjY3VyYWN5LCByZXByb2R1Y2liaWxpdHkgYW5kIGludGVyb2JzZXJ2ZXIgdmFyaWFiaWxp

dHkgdG8gdGhhdCBvZiBzcGVjaWFsIHZvbHVtZXRyeSBwcm90b2NvbHM/PC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPlJvZm88L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPlJvRm8gOiBGb3J0c2No

cml0dGUgYXVmIGRlbSBHZWJpZXRlIGRlciBSb250Z2Vuc3RyYWhsZW4gdW5kIGRlciBOdWtsZWFy

bWVkaXppbjwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJvZm88

L2Z1bGwtdGl0bGU+PGFiYnItMT5Sb0ZvIDogRm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBk

ZXIgUm9udGdlbnN0cmFobGVuIHVuZCBkZXIgTnVrbGVhcm1lZGl6aW48L2FiYnItMT48L3Blcmlv

ZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJvZm88L2Z1bGwtdGl0bGU+PGFiYnIt

MT5Sb0ZvIDogRm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBkZXIgUm9udGdlbnN0cmFobGVu

IHVuZCBkZXIgTnVrbGVhcm1lZGl6aW48L2FiYnItMT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4y

NzYtODE8L3BhZ2VzPjx2b2x1bWU+MTc5PC92b2x1bWU+PG51bWJlcj4zPC9udW1iZXI+PGtleXdv

cmRzPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnZSBQcm9jZXNzaW5nLCBD

b21wdXRlci1Bc3Npc3RlZDwva2V5d29yZD48a2V5d29yZD5MdW5nLyphbmF0b215ICZhbXA7IGhp

c3RvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJl

cHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgt

UmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIw

MDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5NYXI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48

aXNibj4xNDM4LTkwMjkgKFByaW50KSYjeEQ7MTQzOC05MDEwIChMaW5raW5nKTwvaXNibj48YWNj

ZXNzaW9uLW51bT4xNzMyNTk5NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1

cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xNzMyNTk5NTwvdXJsPjwvcmVs

YXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA1NS9zLTIwMDct

OTYyOTI5PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1

dGhvcj5kZSBKb25nPC9BdXRob3I+PFllYXI+MjAxMjwvWWVhcj48UmVjTnVtPjIxNDE8L1JlY051

bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDE8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5

IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRp

bWVzdGFtcD0iMTQzOTIzMzAwMiI+MjE0MTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48YXV0aG9yPkxlaW5lciwgVC48L2F1dGhv

cj48YXV0aG9yPkxhbW1lcnMsIEouIFcuPC9hdXRob3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwv

YXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQg

b2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudHJlIFV0cmVjaHQsIEhQIEUuMDEu

MTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRz

LiBwaW1kZWpvbmdAZ21haWwuY29tPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+Q2FuIGxv

dy1kb3NlIHVuZW5oYW5jZWQgY2hlc3QgQ1QgYmUgdXNlZCBmb3IgZm9sbG93LXVwIG9mIGx1bmcg

bm9kdWxlcz88L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vj

b25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vu

b2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0g

SiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+Nzc3LTgwPC9wYWdl

cz48dm9sdW1lPjE5OTwvdm9sdW1lPjxudW1iZXI+NDwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29y

ZD5BZHVsdDwva2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgw

IGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3b3JkPkNvbnRyYXN0IE1lZGlhPC9rZXl3b3JkPjxrZXl3

b3JkPkRpYWdub3NpcywgRGlmZmVyZW50aWFsPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvKnJh

ZGlvZ3JhcGh5L3NlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3

b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3

b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoeSwgVGhvcmFjaWM8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+KlRv

bW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFy

PjIwMTI8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3Q8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRl

cz48aXNibj4xNTQ2LTMxNDEgKEVsZWN0cm9uaWMpJiN4RDswMzYxLTgwM1ggKExpbmtpbmcpPC9p

c2JuPjxhY2Nlc3Npb24tbnVtPjIyOTk3MzY3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVk

LXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIyOTk3MzY3PC91

cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4yMjE0

L0FKUi4xMS43NTc3PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENp

dGU+PEF1dGhvcj5DaHJpc3RlPC9BdXRob3I+PFllYXI+MjAxMTwvWWVhcj48UmVjTnVtPjIxNzg8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzg8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMTQ0MTU2Mjc4NiI+MjE3ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYt

dHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxh

dXRob3JzPjxhdXRob3I+Q2hyaXN0ZSwgQS48L2F1dGhvcj48YXV0aG9yPlRvcnJlbnRlLCBKLiBD

LjwvYXV0aG9yPjxhdXRob3I+TGluLCBNLjwvYXV0aG9yPjxhdXRob3I+WWVuLCBBLjwvYXV0aG9y

PjxhdXRob3I+SGFsbGV0dCwgUi48L2F1dGhvcj48YXV0aG9yPlJveWNob3VkaHVyeSwgSy48L2F1

dGhvcj48YXV0aG9yPlNjaG1pdHpiZXJnZXIsIEYuPC9hdXRob3I+PGF1dGhvcj5Wb2NrLCBQLjwv

YXV0aG9yPjxhdXRob3I+Um9vcywgSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgU3RhbmZvcmQgVW5pdmVyc2l0

eSBTY2hvb2wgb2YgTWVkaWNpbmUsIFN0YW5mb3JkLCBDQSwgVVNBLiBhbmRyZWFzLmNocmlzdGVA

aW5zZWwuY2g8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5DVCBzY3JlZW5pbmcgYW5kIGZv

bGxvdy11cCBvZiBsdW5nIG5vZHVsZXM6IGVmZmVjdHMgb2YgdHViZSBjdXJyZW50LXRpbWUgc2V0

dGluZyBhbmQgbm9kdWxlIHNpemUgYW5kIGRlbnNpdHkgb24gZGV0ZWN0YWJpbGl0eSBhbmQgb2Yg

dHViZSBjdXJyZW50LXRpbWUgc2V0dGluZyBvbiBhcHBhcmVudCBzaXplPC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

PkFKUi4gQW1lcmljYW4gam91cm5hbCBvZiByb2VudGdlbm9sb2d5PC9hbHQtdGl0bGU+PC90aXRs

ZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvZnVsbC10aXRs

ZT48L3BlcmlvZGljYWw+PHBhZ2VzPjYyMy0zMDwvcGFnZXM+PHZvbHVtZT4xOTc8L3ZvbHVtZT48

bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdv

cmQ+QWdlZDwva2V5d29yZD48a2V5d29yZD5BZ2VkLCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5

d29yZD5GZWFzaWJpbGl0eSBTdHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29y

ZD48a2V5d29yZD5Gb2xsb3ctVXAgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+TG9naXN0aWMgTW9kZWxzPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVv

cGxhc21zL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5Qcm9zcGVjdGl2ZSBT

dHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdv

cmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZDwv

a2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtl

eXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVs

ZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRpbWUgRmFjdG9yczwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDExPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

U2VwPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMTg2MjgwNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMTg2MjgwNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTAuNTI4ODwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SG9uZGE8L0F1dGhvcj48WWVh

cj4yMDA3PC9ZZWFyPjxSZWNOdW0+MTkwMDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MTkw

MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXph

eHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIwIj4xOTAwPC9rZXk+PC9m

b3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBl

Pjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Ib25kYSwgTy48L2F1dGhvcj48YXV0aG9y

PlN1bWlrYXdhLCBILjwvYXV0aG9yPjxhdXRob3I+Sm9oa29oLCBULjwvYXV0aG9yPjxhdXRob3I+

VG9taXlhbWEsIE4uPC9hdXRob3I+PGF1dGhvcj5NaWhhcmEsIE4uPC9hdXRob3I+PGF1dGhvcj5J

bm91ZSwgQS48L2F1dGhvcj48YXV0aG9yPlRzdWJhbW90bywgTS48L2F1dGhvcj48YXV0aG9yPk5h

dHNhZywgSi48L2F1dGhvcj48YXV0aG9yPkhhbWFkYSwgUy48L2F1dGhvcj48YXV0aG9yPk5ha2Ft

dXJhLCBILjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRl

cGFydG1lbnQgb2YgUmFkaW9sb2d5LCBPc2FrYSBVbml2ZXJzaXR5IEdyYWR1YXRlIFNjaG9vbCBv

ZiBNZWRpY2luZSwgMi0yIFlhbWFkYW9rYSwgU3VpdGEsIE9zYWthIDU2NS0wODcxLCBKYXBhbi4g

b2hvbmRhQHJhZGlvbC5tZWQub3Nha2EtdS5hYy5qcDwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRp

dGxlPkNvbXB1dGVyLWFzc2lzdGVkIGx1bmcgbm9kdWxlIHZvbHVtZXRyeSBmcm9tIG11bHRpLWRl

dGVjdG9yIHJvdyBDVDogaW5mbHVlbmNlIG9mIGltYWdlIHJlY29uc3RydWN0aW9uIHBhcmFtZXRl

cnM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+RXVyIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+

PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxl

PjwvcGVyaW9kaWNhbD48cGFnZXM+MTA2LTEzPC9wYWdlcz48dm9sdW1lPjYyPC92b2x1bWU+PG51

bWJlcj4xPC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkb2xlc2NlbnQ8L2tleXdvcmQ+PGtl

eXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdlZDwva2V5d29yZD48a2V5d29yZD5BZ2Vk

LCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVu

ZyBOZW9wbGFzbXMvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxl

PC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dy

YXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5TdGF0aXN0aWNzLCBOb25wYXJhbWV0cmljPC9rZXl3b3JkPjxrZXl3

b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29y

ZHM+PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9w

dWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4xNzE2MTU3MTwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2VudHJl

ei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9u

JmFtcDtsaXN0X3VpZHM9MTcxNjE1NzEgPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPllvdW5nPC9BdXRob3I+PFllYXI+MjAxNTwvWWVhcj48

UmVjTnVtPjIxODA8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxODA8L3JlYy1udW1iZXI+

PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZy

NWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MzAyOSI+MjE4MDwva2V5PjwvZm9yZWln

bi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29u

dHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+WW91bmcsIFMuPC9hdXRob3I+PGF1dGhvcj5LaW0s

IEguIEouPC9hdXRob3I+PGF1dGhvcj5LbywgTS4gTS48L2F1dGhvcj48YXV0aG9yPktvLCBXLiBX

LjwvYXV0aG9yPjxhdXRob3I+RmxvcmVzLCBDLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdyYXks

IE0uIEYuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVw

YXJ0bWVudCBvZiBSYWRpb2xvZ2ljYWwgU2NpZW5jZXMsIFVuaXZlcnNpdHkgb2YgQ2FsaWZvcm5p

YSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMsIENhbGlmb3JuaWEgOTAwMjQuPC9hdXRoLWFkZHJl

c3M+PHRpdGxlcz48dGl0bGU+VmFyaWFiaWxpdHkgaW4gQ1QgbHVuZy1ub2R1bGUgdm9sdW1ldHJ5

OiBFZmZlY3RzIG9mIGRvc2UgcmVkdWN0aW9uIGFuZCByZWNvbnN0cnVjdGlvbiBtZXRob2RzPC90

aXRsZT48c2Vjb25kYXJ5LXRpdGxlPk1lZCBQaHlzPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRs

ZT5NZWRpY2FsIHBoeXNpY3M8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5NZWQgUGh5czwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjI2NzktODk8L3Bh

Z2VzPjx2b2x1bWU+NDI8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48ZGF0ZXM+PHllYXI+MjAx

NTwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxp

c2JuPjAwOTQtMjQwNSAoUHJpbnQpJiN4RDswMDk0LTI0MDUgKExpbmtpbmcpPC9pc2JuPjxhY2Nl

c3Npb24tbnVtPjI1OTc5MDY2PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVy

bD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzI1OTc5MDY2PC91cmw+PC9yZWxh

dGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMTE4LzEuNDkxODkx

OTwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+

QXNocmFmPC9BdXRob3I+PFllYXI+MjAxMDwvWWVhcj48UmVjTnVtPjIxODI8L1JlY051bT48cmVj

b3JkPjxyZWMtbnVtYmVyPjIxODI8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0i

RU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFt

cD0iMTQ0MTU2Mzc2MCI+MjE4Mjwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJK

b3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRo

b3I+QXNocmFmLCBILjwvYXV0aG9yPjxhdXRob3I+ZGUgSG9vcCwgQi48L2F1dGhvcj48YXV0aG9y

PlNoYWtlciwgUy4gQi48L2F1dGhvcj48YXV0aG9yPkRpcmtzZW4sIEEuPC9hdXRob3I+PGF1dGhv

cj5CYWNoLCBLLiBTLjwvYXV0aG9yPjxhdXRob3I+SGFuc2VuLCBILjwvYXV0aG9yPjxhdXRob3I+

UHJva29wLCBNLjwvYXV0aG9yPjxhdXRob3I+UGVkZXJzZW4sIEouIEguPC9hdXRob3I+PC9hdXRo

b3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ks

IEdlbnRvZnRlIEhvc3BpdGFsLCBDb3BlbmhhZ2VuIFVuaXZlcnNpdHksIEhlbGxlcnVwLCBEZW5t

YXJrLiBIYXNlZW1AZGFkbG5ldC5kazwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkx1bmcg

bm9kdWxlIHZvbHVtZXRyeTogc2VnbWVudGF0aW9uIGFsZ29yaXRobXMgd2l0aGluIHRoZSBzYW1l

IHNvZnR3YXJlIHBhY2thZ2UgY2Fubm90IGJlIHVzZWQgaW50ZXJjaGFuZ2VhYmx5PC90aXRsZT48

c2Vjb25kYXJ5LXRpdGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1

cm9wZWFuIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPkV1ciBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xODc4LTg1PC9w

YWdlcz48dm9sdW1lPjIwPC92b2x1bWU+PG51bWJlcj44PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3

b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+KkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+

RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnZSBJ

bnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBOZW9wbGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tl

eXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmls

aXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmlj

aXR5PC9rZXl3b3JkPjxrZXl3b3JkPipTb2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD4qU29mdHdh

cmUgVmFsaWRhdGlvbjwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxl

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRl

ZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEwPC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+QXVnPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzMi0x

MDg0IChFbGVjdHJvbmljKSYjeEQ7MDkzOC03OTk0IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9u

LW51bT4yMDMwNjA4MjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0

cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMDMwNjA4MjwvdXJsPjwvcmVsYXRlZC11

cmxzPjwvdXJscz48Y3VzdG9tMj4yODk5MDEyPC9jdXN0b20yPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMDA3L3MwMDMzMC0wMTAtMTc0OS16PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48

L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5DaHJpc3RlPC9BdXRob3I+PFllYXI+MjAxNDwv

WWVhcj48UmVjTnVtPjIxODM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxODM8L3JlYy1u

dW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4

c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2Mzg0NCI+MjE4Mzwva2V5Pjwv

Zm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlw

ZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Q2hyaXN0ZSwgQS48L2F1dGhvcj48YXV0

aG9yPkJyb25uaW1hbm4sIEEuPC9hdXRob3I+PGF1dGhvcj5Wb2NrLCBQLjwvYXV0aG9yPjwvYXV0

aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgRGlhZ25vc3Rp

YywgSW50ZXJ2ZW50aW9uYWwgYW5kIFBlZGlhdHJpYyBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgb2Yg

QmVybiwgSW5zZWxzcGl0YWwsIEJlcm4sIFN3aXR6ZXJsYW5kLjwvYXV0aC1hZGRyZXNzPjx0aXRs

ZXM+PHRpdGxlPlZvbHVtZXRyaWMgYW5hbHlzaXMgb2YgbHVuZyBub2R1bGVzIGluIGNvbXB1dGVk

IHRvbW9ncmFwaHkgKENUKTogY29tcGFyaXNvbiBvZiB0d28gZGlmZmVyZW50IHNlZ21lbnRhdGlv

biBhbGdvcml0aG0gc29mdHdhcmVzIGFuZCB0d28gZGlmZmVyZW50IHJlY29uc3RydWN0aW9uIGZp

bHRlcnMgb24gYXV0b21hdGVkIHZvbHVtZSBjYWxjdWxhdGlvbjwvdGl0bGU+PHNlY29uZGFyeS10

aXRsZT5BY3RhIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWN0YSByYWRpb2xv

Z2ljYTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjdGEgUmFk

aW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NTQtNjE8L3BhZ2VzPjx2b2x1bWU+

NTU8L3ZvbHVtZT48bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+KkFsZ29yaXRo

bXM8L2tleXdvcmQ+PGtleXdvcmQ+Q29uZS1CZWFtIENvbXB1dGVkIFRvbW9ncmFwaHkvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJ

bnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+KlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUv

KnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTQ8L3llYXI+

PHB1Yi1kYXRlcz48ZGF0ZT5GZWI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNjAw

LTA0NTUgKEVsZWN0cm9uaWMpJiN4RDswMjg0LTE4NTEgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Np

b24tbnVtPjIzODY0MDYzPC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5o

dHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIzODY0MDYzPC91cmw+PC9yZWxhdGVk

LXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMTc3LzAyODQxODUxMTM0

OTI0NTQ8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0

aG9yPlpoYW88L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjEyNzwvUmVjTnVtPjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjEyNzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDA2MjE5MDA1Ij4yMTI3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5aaGFvLCBZLiBSLjwvYXV0aG9yPjxhdXRob3I+T29pamVuLCBQLiBNLjwvYXV0aG9yPjxh

dXRob3I+RG9ycml1cywgTS4gRC48L2F1dGhvcj48YXV0aG9yPkhldXZlbG1hbnMsIE0uPC9hdXRo

b3I+PGF1dGhvcj5Cb2NrLCBHLiBILjwvYXV0aG9yPjxhdXRob3I+VmxpZWdlbnRoYXJ0LCBSLjwv

YXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRv

cnM+PGF1dGgtYWRkcmVzcz5DZW50ZXIgZm9yIE1lZGljYWwgSW1hZ2luZywgTm9ydGggRWFzdCBO

ZXRoZXJsYW5kcywgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBD

ZW50ZXIgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcyBEZXBhcnRtZW50IG9m

IFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBD

ZW50ZXIgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy4mI3hEO0NlbnRlciBm

b3IgTWVkaWNhbCBJbWFnaW5nLCBOb3J0aCBFYXN0IE5ldGhlcmxhbmRzLCBVbml2ZXJzaXR5IG9m

IEdyb25pbmdlbiwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5nZW4sIEdyb25pbmdl

biwgdGhlIE5ldGhlcmxhbmRzIERlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IG9m

IEdyb25pbmdlbiwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5nZW4sIEdyb25pbmdl

biwgdGhlIE5ldGhlcmxhbmRzIHAubS5hLnZhbi5vb3llbkB1bWNnLm5sLiYjeEQ7Q2VudGVyIGZv

ciBNZWRpY2FsIEltYWdpbmcsIE5vcnRoIEVhc3QgTmV0aGVybGFuZHMsIFVuaXZlcnNpdHkgb2Yg

R3JvbmluZ2VuLCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudGVyIEdyb25pbmdlbiwgR3JvbmluZ2Vu

LCB0aGUgTmV0aGVybGFuZHMuJiN4RDtEZXBhcnRtZW50IG9mIEVwaWRlbWlvbG9neSwgVW5pdmVy

c2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIgR3JvbmluZ2VuLCBH

cm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5D

b21wYXJpc29uIG9mIHRocmVlIHNvZnR3YXJlIHN5c3RlbXMgZm9yIHNlbWktYXV0b21hdGljIHZv

bHVtZXRyeSBvZiBwdWxtb25hcnkgbm9kdWxlcyBvbiBiYXNlbGluZSBhbmQgZm9sbG93LXVwIENU

IGV4YW1pbmF0aW9uczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5BY3RhIFJhZGlvbDwvc2Vjb25k

YXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjdGEgUmFkaW9sPC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NjkxLTY5ODwvcGFnZXM+PHZvbHVtZT41NTwv

dm9sdW1lPjxudW1iZXI+NjwvbnVtYmVyPjxlZGl0aW9uPjIwMTMvMTAvMTg8L2VkaXRpb24+PGRh

dGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3QgMTY8L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNjAwLTA0NTUgKEVsZWN0cm9uaWMpJiN4RDswMjg0LTE4NTEg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI0MTMyNzY2PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzI0MTMyNzY2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMTc3LzAyODQxODUxMTM1MDgxNzc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjxs

YW5ndWFnZT5Fbmc8L2xhbmd1YWdlPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdhdnJp

ZWxpZGVzPC9BdXRob3I+PFllYXI+MjAwOTwvWWVhcj48UmVjTnVtPjIxODQ8L1JlY051bT48cmVj

b3JkPjxyZWMtbnVtYmVyPjIxODQ8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0i

RU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFt

cD0iMTQ0MTU2Mzk5NSI+MjE4NDwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJK

b3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRo

b3I+R2F2cmllbGlkZXMsIE0uIEEuPC9hdXRob3I+PGF1dGhvcj5LaW5uYXJkLCBMLiBNLjwvYXV0

aG9yPjxhdXRob3I+TXllcnMsIEsuIEouPC9hdXRob3I+PGF1dGhvcj5QZXRyaWNrLCBOLjwvYXV0

aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk5hdGlvbmFsIEluc3Rp

dHV0ZSBvZiBCaW9tZWRpY2FsIEltYWdpbmcgYW5kIEJpb2VuZ2luZWVyaW5nL0NlbnRlciBmb3Ig

RGV2aWNlcyBhbmQgUmFkaW9sb2dpY2FsIEhlYWx0aCwgVS5TLiBGb29kIGFuZCBEcnVnIEFkbWlu

aXN0cmF0aW9uLCBTaWx2ZXIgU3ByaW5nLCBNRCAyMDk5My0wMDAyLCBVU0EuIG1hcmlvcy5nYXZy

aWVsaWRlc0BmZGEuaGhzLmdvdjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPk5vbmNhbGNp

ZmllZCBsdW5nIG5vZHVsZXM6IHZvbHVtZXRyaWMgYXNzZXNzbWVudCB3aXRoIHRob3JhY2ljIENU

PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQt

dGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0

bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1

bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI2

LTM3PC9wYWdlcz48dm9sdW1lPjI1MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jk

cz48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5DYWxjaW5vc2lzL3JhZGlv

Z3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3Bs

YXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVu

aGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIElu

dGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5SYWRpb2dyYXBoeSwgVGhvcmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9k

dWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNw

ZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJh

ZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLypt

ZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDk8L3llYXI+PHB1Yi1k

YXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTI3LTEzMTUg

KEVsZWN0cm9uaWMpJiN4RDswMDMzLTg0MTkgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVt

PjE5MzMyODQ0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE5MzMyODQ0PC91cmw+PC9yZWxhdGVkLXVybHM+

PC91cmxzPjxjdXN0b20yPjI2NjM1ODE8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjExNDgvcmFkaW9sLjI1MTEwNzE4OTc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPk1hcnRlbjwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+

PFJlY051bT4yMTg1PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTg1PC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjQwOTciPjIxODU8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk1hcnRlbiwgSy48L2F1dGhvcj48YXV0aG9yPkVu

Z2Vsa2UsIEMuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIEtsaW5pa3VtIHJlY2h0cyBkZXIgSXNhciwgVGVjaG5p

Y2FsIFVuaXZlcnNpdHkgTXVuaWNoLCBJc21hbmluZ2Vyc3RyLiAyMiwgODE2NzUsIE11bmljaCwg

R2VybWFueS4gS2F0aGFyaW5hLm1hcnRlbkByb2UubWVkLnR1LW11ZW5jaGVuLmRlPC9hdXRoLWFk

ZHJlc3M+PHRpdGxlcz48dGl0bGU+Q29tcHV0ZXItYWlkZWQgZGV0ZWN0aW9uIGFuZCBhdXRvbWF0

ZWQgQ1Qgdm9sdW1ldHJ5IG9mIHB1bG1vbmFyeSBub2R1bGVzPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJhZGlv

bG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBSYWRp

b2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44ODgtOTAxPC9wYWdlcz48dm9sdW1l

PjE3PC92b2x1bWU+PG51bWJlcj40PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9r

ZXl3b3JkPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+KkRpYWdub3NpcywgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1

bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qZGlhZ25vc2lzPC9rZXl3b3Jk

PjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtl

eXdvcmQ+TmVvcGxhc20gTWV0YXN0YXNpcy8qZGlhZ25vc2lzPC9rZXl3b3JkPjxrZXl3b3JkPk9i

c2VydmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVz

dWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypkaWFnbm9z

aXM8L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL21ldGhvZHM8

L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVzPjxk

YXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjA5MzgtNzk5NCAoUHJpbnQp

JiN4RDswOTM4LTc5OTQgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3MDQ3OTYxPC9h

Y2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxt

Lm5paC5nb3YvcHVibWVkLzE3MDQ3OTYxPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVj

dHJvbmljLXJlc291cmNlLW51bT4xMC4xMDA3L3MwMDMzMC0wMDYtMDQxMC0zPC9lbGVjdHJvbmlj

LXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5Cb2xsPC9BdXRob3I+

PFllYXI+MjAwNDwvWWVhcj48UmVjTnVtPjIxODc8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVy

PjIxODc8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4

OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2NDI4MCI+

MjE4Nzwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUi

PjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sbCwgRC4gVC48

L2F1dGhvcj48YXV0aG9yPkdpbGtlc29uLCBSLiBDLjwvYXV0aG9yPjxhdXRob3I+RmxlaXRlciwg

VC4gUi48L2F1dGhvcj48YXV0aG9yPkJsYWNraGFtLCBLLiBBLjwvYXV0aG9yPjxhdXRob3I+RHVl

cmssIEouIEwuPC9hdXRob3I+PGF1dGhvcj5MZXdpbiwgSi4gUy48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5p

dmVyc2l0eSBIb3NwaXRhbHMgb2YgQ2xldmVsYW5kLCBDYXNlIFdlc3Rlcm4gUmVzZXJ2ZSBVbml2

ZXJzaXR5LCAxMTEwMCBFdWNsaWQgQXZlbnVlLCBDbGV2ZWxhbmQsIE9IIDQ0MTA2LTUwNTYsIFVT

QS4gYm9sbEB1aHJhZC5jb208L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmlj

IGFzc2Vzc21lbnQgb2YgcHVsbW9uYXJ5IG5vZHVsZXMgd2l0aCBFQ0ctZ2F0ZWQgTURDVDwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjE3LTIzPC9wYWdlcz48dm9sdW1lPjE4

Mzwvdm9sdW1lPjxudW1iZXI+NTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5

d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9r

ZXl3b3JkPjxrZXl3b3JkPipFbGVjdHJvY2FyZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkZl

bWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9yYWRp

b2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBB

Z2VkPC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3Jk

PlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3Jk

PipUb21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48

eWVhcj4yMDA0PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9kYXRlPjwvcHViLWRhdGVzPjwv

ZGF0ZXM+PGlzYm4+MDM2MS04MDNYIChQcmludCkmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MTU1MDUyODA8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTU1MDUyODA8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIyMTQv

YWpyLjE4My41LjE4MzEyMTc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0

ZT48L0VuZE5vdGU+

ADDIN EN.CITE PEVuZE5vdGU+PENpdGU+PEF1dGhvcj5HYXZyaWVsaWRlczwvQXV0aG9yPjxZZWFyPjIwMTM8L1ll

YXI+PFJlY051bT4yMTczPC9SZWNOdW0+PERpc3BsYXlUZXh0Pig1Mi02Nik8L0Rpc3BsYXlUZXh0

PjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE3MzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkg

YXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGlt

ZXN0YW1wPSIxNDQxNTYxNzUxIj4yMTczPC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5h

bWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+

PGF1dGhvcj5HYXZyaWVsaWRlcywgTS4gQS48L2F1dGhvcj48YXV0aG9yPkxpLCBRLjwvYXV0aG9y

PjxhdXRob3I+WmVuZywgUi48L2F1dGhvcj48YXV0aG9yPk15ZXJzLCBLLiBKLjwvYXV0aG9yPjxh

dXRob3I+U2FoaW5lciwgQi48L2F1dGhvcj48YXV0aG9yPlBldHJpY2ssIE4uPC9hdXRob3I+PC9h

dXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGl2aXNpb24gb2YgSW1hZ2luZyBh

bmQgQXBwbGllZCBNYXRoZW1hdGljcywgT2ZmaWNlIG9mIFNjaWVuY2UgYW5kIEVuZ2luZWVyaW5n

IExhYm9yYXRvcmllcywgQ2VudGVyIGZvciBEZXZpY2VzIGFuZCBSYWRpb2xvZ2ljYWwgSGVhbHRo

LCBVLlMuIEZvb2QgYW5kIERydWcgQWRtaW5pc3RyYXRpb24sIDEwOTAzIE5ldyBIYW1wc2hpcmUg

QXZlbnVlLCBCbGRnLiA2MiwgUm0uNDExNCwgU2lsdmVyIFNwcmluZywgTUQgMjA5OTMuIEVsZWN0

cm9uaWMgYWRkcmVzczogbWFyaW9zLmdhdnJpZWxpZGVzQGZkYS5oaHMuZ292LjwvYXV0aC1hZGRy

ZXNzPjx0aXRsZXM+PHRpdGxlPk1pbmltdW0gZGV0ZWN0YWJsZSBjaGFuZ2UgaW4gbHVuZyBub2R1

bGUgdm9sdW1lIGluIGEgcGhhbnRvbSBDVCBzdHVkeTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5B

Y2FkIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWNhZGVtaWMgcmFkaW9sb2d5

PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QWNhZCBSYWRpb2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BY2Fk

ZW1pYyBSYWRpb2xvZ3k8L2Z1bGwtdGl0bGU+PC9hbHQtcGVyaW9kaWNhbD48cGFnZXM+MTM2NC03

MDwvcGFnZXM+PHZvbHVtZT4yMDwvdm9sdW1lPjxudW1iZXI+MTE8L251bWJlcj48a2V5d29yZHM+

PGtleXdvcmQ+SHVtYW5zPC9rZXl3b3JkPjxrZXl3b3JkPipQaGFudG9tcywgSW1hZ2luZzwva2V5

d29yZD48a2V5d29yZD5ST0MgQ3VydmU8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIElt

YWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC9tZXRob2RzPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5

d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5Ob3Y8L2RhdGU+

PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xODc4LTQwNDYgKEVsZWN0cm9uaWMpJiN4RDsxMDc2

LTYzMzIgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI0MTE5MzQ4PC9hY2Nlc3Npb24t

bnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3Yv

cHVibWVkLzI0MTE5MzQ4PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJl

c291cmNlLW51bT4xMC4xMDE2L2ouYWNyYS4yMDEzLjA4LjAxOTwvZWxlY3Ryb25pYy1yZXNvdXJj

ZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+Qm9sdGU8L0F1dGhvcj48WWVhcj4y

MDA2PC9ZZWFyPjxSZWNOdW0+MjE3NDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MjE3NDwv

cmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXpheHZk

dmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIxNDQxNTYxOTE3Ij4yMTc0PC9r

ZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3Jl

Zi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Cb2x0ZSwgSC48L2F1dGhvcj48

YXV0aG9yPlJpZWRlbCwgQy48L2F1dGhvcj48YXV0aG9yPkphaG5rZSwgVC48L2F1dGhvcj48YXV0

aG9yPkluYW4sIE4uPC9hdXRob3I+PGF1dGhvcj5GcmVpdGFnLCBTLjwvYXV0aG9yPjxhdXRob3I+

S29obCwgRy48L2F1dGhvcj48YXV0aG9yPkhlbGxlciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRl

cmVyLCBKLjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRl

cGFydG1lbnQgb2YgRGlhZ25vc3RpYyBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgSG9zcGl0YWwgU2No

bGVzd2lnLUhvbHN0ZWluIENhbXB1cyBLaWVsLCBHZXJtYW55LiBIZW5kcmlrYm9sdGVAcmFkLnVu

aS1raWVsLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+UmVwcm9kdWNpYmlsaXR5IG9m

IGNvbXB1dGVyLWFpZGVkIHZvbHVtZXRyeSBvZiBhcnRpZmljaWFsIHNtYWxsIHB1bG1vbmFyeSBu

b2R1bGVzIGluIGV4IHZpdm8gcG9yY2luZSBsdW5nczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5J

bnZlc3QgUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRsZT5JbnZlc3RpZ2F0aXZlIHJh

ZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkludmVz

dCBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxhbHQtcGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5JbnZlc3RpZ2F0aXZlIFJhZGlvbG9neTwvZnVsbC10aXRsZT48L2FsdC1wZXJpb2RpY2Fs

PjxwYWdlcz4yOC0zNTwvcGFnZXM+PHZvbHVtZT40MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVy

PjxrZXl3b3Jkcz48a2V5d29yZD5BbmFseXNpcyBvZiBWYXJpYW5jZTwva2V5d29yZD48a2V5d29y

ZD5BbmltYWxzPC9rZXl3b3JkPjxrZXl3b3JkPkluIFZpdHJvIFRlY2huaXF1ZXM8L2tleXdvcmQ+

PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlBo

YW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoaWMgSW1hZ2UgSW50

ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxrZXl3b3JkPlJlcHJvZHVj

aWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxr

ZXl3b3JkPlN0YXRpc3RpY3MsIE5vbnBhcmFtZXRyaWM8L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8

L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1SYXkgQ29tcHV0ZWQvKm1ldGhvZHM8L2tl

eXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNjwveWVhcj48cHViLWRhdGVzPjxkYXRl

PkphbjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjAwMjAtOTk5NiAoUHJpbnQpJiN4

RDswMDIwLTk5OTYgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE2MzU1MDM3PC9hY2Nl

c3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5p

aC5nb3YvcHVibWVkLzE2MzU1MDM3PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwvcmVjb3Jk

PjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkJvbHRlPC9BdXRob3I+PFllYXI+MjAwNzwvWWVhcj48UmVj

TnVtPjIxNzU8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzU8L3JlYy1udW1iZXI+PGZv

cmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNl

ZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MTkzOCI+MjE3NTwva2V5PjwvZm9yZWlnbi1r

ZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJp

YnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sdGUsIEguPC9hdXRob3I+PGF1dGhvcj5SaWVkZWws

IEMuPC9hdXRob3I+PGF1dGhvcj5NdWxsZXItSHVsc2JlY2ssIFMuPC9hdXRob3I+PGF1dGhvcj5G

cmVpdGFnLVdvbGYsIFMuPC9hdXRob3I+PGF1dGhvcj5Lb2hsLCBHLjwvYXV0aG9yPjxhdXRob3I+

RHJld3MsIFQuPC9hdXRob3I+PGF1dGhvcj5IZWxsZXIsIE0uPC9hdXRob3I+PGF1dGhvcj5CaWVk

ZXJlciwgSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5E

ZXBhcnRtZW50IG9mIERpYWdub3N0aWMgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IEhvc3BpdGFsIFNj

aGxlc3dpZy1Ib2xzdGVpbiBDYW1wdXMgS2llbCwgQXJub2xkLUhlbGxlciBTdHJhc3NlIDksIDI0

MTA1IEtpZWwsIEdlcm1hbnkuIGhlbmRyaWtib2x0ZUByYWQudW5pLWtpZWwuZGU8L2F1dGgtYWRk

cmVzcz48dGl0bGVzPjx0aXRsZT5QcmVjaXNpb24gb2YgY29tcHV0ZXItYWlkZWQgdm9sdW1ldHJ5

IG9mIGFydGlmaWNpYWwgc21hbGwgc29saWQgcHVsbW9uYXJ5IG5vZHVsZXMgaW4gZXggdml2byBw

b3JjaW5lIGx1bmdzPC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPkJyIEogUmFkaW9sPC9zZWNvbmRh

cnktdGl0bGU+PGFsdC10aXRsZT5UaGUgQnJpdGlzaCBqb3VybmFsIG9mIHJhZGlvbG9neTwvYWx0

LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkJyIEogUmFkaW9sPC9mdWxs

LXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NDE0LTIxPC9wYWdlcz48dm9sdW1lPjgwPC92b2x1

bWU+PG51bWJlcj45NTQ8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QW5pbWFsczwva2V5d29y

ZD48a2V5d29yZD5MdW5nLypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5QaGFudG9tcywg

SW1hZ2luZzwva2V5d29yZD48a2V5d29yZD5SYWRpb2dyYXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRp

b24sIENvbXB1dGVyLUFzc2lzdGVkL21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+U29mdHdhcmU8

L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8

L2tleXdvcmQ+PGtleXdvcmQ+U3dpbmU8L2tleXdvcmQ+PGtleXdvcmQ+VG9tb2dyYXBoeSwgWC1S

YXkgQ29tcHV0ZWQvaW5zdHJ1bWVudGF0aW9uLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+

PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5KdW48L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNzQ4LTg4MFggKEVsZWN0cm9uaWMpJiN4RDswMDA3LTEyODUg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3Njg0MDc1PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzE3Njg0MDc1PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMjU5L2Jqci8yMzkzMzI2ODwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNv

cmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+V2FuZzwvQXV0aG9yPjxZZWFyPjIwMTA8L1llYXI+PFJl

Y051bT4yMTc2PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTc2PC9yZWMtbnVtYmVyPjxm

b3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2cjVj

ZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjIzODUiPjIxNzY8L2tleT48L2ZvcmVpZ24t

a2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNvbnRy

aWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPldhbmcsIFkuPC9hdXRob3I+PGF1dGhvcj5kZSBCb2Nr

LCBHLiBILjwvYXV0aG9yPjxhdXRob3I+dmFuIEtsYXZlcmVuLCBSLiBKLjwvYXV0aG9yPjxhdXRo

b3I+dmFuIE9veWVuLCBQLjwvYXV0aG9yPjxhdXRob3I+VHVra2VyLCBXLjwvYXV0aG9yPjxhdXRo

b3I+WmhhbywgWS48L2F1dGhvcj48YXV0aG9yPkRvcnJpdXMsIE0uIEQuPC9hdXRob3I+PGF1dGhv

cj5Qcm9lbmNhLCBSLiBWLjwvYXV0aG9yPjxhdXRob3I+UG9zdCwgVy4gSi48L2F1dGhvcj48YXV0

aG9yPk91ZGtlcmssIE0uPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFk

ZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIg

R3JvbmluZ2VuLCBVbml2ZXJzaXR5IG9mIEdyb25pbmdlbiwgSGFuemVwbGVpbiAxLCA5NzAwIFJC

LCBHcm9uaW5nZW4sIFRoZSBOZXRoZXJsYW5kcy48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRs

ZT5Wb2x1bWV0cmljIG1lYXN1cmVtZW50IG9mIHB1bG1vbmFyeSBub2R1bGVzIGF0IGxvdy1kb3Nl

IGNoZXN0IENUOiBlZmZlY3Qgb2YgcmVjb25zdHJ1Y3Rpb24gc2V0dGluZyBvbiBtZWFzdXJlbWVu

dCB2YXJpYWJpbGl0eTwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5FdXIgUmFkaW9sPC9zZWNvbmRh

cnktdGl0bGU+PGFsdC10aXRsZT5FdXJvcGVhbiByYWRpb2xvZ3k8L2FsdC10aXRsZT48L3RpdGxl

cz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5FdXIgUmFkaW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9k

aWNhbD48cGFnZXM+MTE4MC03PC9wYWdlcz48dm9sdW1lPjIwPC92b2x1bWU+PG51bWJlcj41PC9u

dW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9r

ZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8q

cmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5d29yZD48a2V5d29yZD5NaWRk

bGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5SYWRpYXRpb24gRG9zYWdlPC9rZXl3b3JkPjxrZXl3

b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJbnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQv

Km1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tl

eXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3

b3JkPlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUv

KnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVk

LyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTA8L3llYXI+PHB1

Yi1kYXRlcz48ZGF0ZT5NYXk8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNDMyLTEw

ODQgKEVsZWN0cm9uaWMpJiN4RDswOTM4LTc5OTQgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24t

bnVtPjE5OTIxMjA0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRw

Oi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE5OTIxMjA0PC91cmw+PC9yZWxhdGVkLXVy

bHM+PC91cmxzPjxjdXN0b20yPjI4NTA1Mjc8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2Ut

bnVtPjEwLjEwMDcvczAwMzMwLTAwOS0xNjM0LTk8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwv

cmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkJvbHRlPC9BdXRob3I+PFllYXI+MjAwNzwvWWVh

cj48UmVjTnVtPjIxNzc8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzc8L3JlYy1udW1i

ZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2Fh

cHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MjQ4NyI+MjE3Nzwva2V5PjwvZm9y

ZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48

Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sdGUsIEguPC9hdXRob3I+PGF1dGhvcj5S

aWVkZWwsIEMuPC9hdXRob3I+PGF1dGhvcj5Lbm9zcywgTi48L2F1dGhvcj48YXV0aG9yPkZyZWl0

YWcsIFMuPC9hdXRob3I+PGF1dGhvcj5Ib2ZmbWFubiwgQi48L2F1dGhvcj48YXV0aG9yPkhlbGxl

ciwgTS48L2F1dGhvcj48YXV0aG9yPkJpZWRlcmVyLCBKLjwvYXV0aG9yPjwvYXV0aG9ycz48L2Nv

bnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPktsaW5payBmdXIgRGlhZ25vc3Rpc2NoZSBSYWRpb2xv

Z2llLCBVbml2ZXJzaXRhdHNrbGluaWt1bSBTY2hsZXN3aWctSG9sc3RlaW4sIENhbXB1cyBLaWVs

LiBoZW5kcmlrYm9sdGVAcmFkLnVuaS1raWVsLmRlPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0

bGU+Q29tcHV0ZWQgdG9tb2dyYXBoeS1iYXNlZCBsdW5nIG5vZHVsZSB2b2x1bWV0cnktLWRvIG9w

dGltaXplZCByZWNvbnN0cnVjdGlvbnMgb2Ygcm91dGluZSBwcm90b2NvbHMgYWNoaWV2ZSBzaW1p

bGFyIGFjY3VyYWN5LCByZXByb2R1Y2liaWxpdHkgYW5kIGludGVyb2JzZXJ2ZXIgdmFyaWFiaWxp

dHkgdG8gdGhhdCBvZiBzcGVjaWFsIHZvbHVtZXRyeSBwcm90b2NvbHM/PC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPlJvZm88L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPlJvRm8gOiBGb3J0c2No

cml0dGUgYXVmIGRlbSBHZWJpZXRlIGRlciBSb250Z2Vuc3RyYWhsZW4gdW5kIGRlciBOdWtsZWFy

bWVkaXppbjwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJvZm88

L2Z1bGwtdGl0bGU+PGFiYnItMT5Sb0ZvIDogRm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBk

ZXIgUm9udGdlbnN0cmFobGVuIHVuZCBkZXIgTnVrbGVhcm1lZGl6aW48L2FiYnItMT48L3Blcmlv

ZGljYWw+PGFsdC1wZXJpb2RpY2FsPjxmdWxsLXRpdGxlPlJvZm88L2Z1bGwtdGl0bGU+PGFiYnIt

MT5Sb0ZvIDogRm9ydHNjaHJpdHRlIGF1ZiBkZW0gR2ViaWV0ZSBkZXIgUm9udGdlbnN0cmFobGVu

IHVuZCBkZXIgTnVrbGVhcm1lZGl6aW48L2FiYnItMT48L2FsdC1wZXJpb2RpY2FsPjxwYWdlcz4y

NzYtODE8L3BhZ2VzPjx2b2x1bWU+MTc5PC92b2x1bWU+PG51bWJlcj4zPC9udW1iZXI+PGtleXdv

cmRzPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnZSBQcm9jZXNzaW5nLCBD

b21wdXRlci1Bc3Npc3RlZDwva2V5d29yZD48a2V5d29yZD5MdW5nLyphbmF0b215ICZhbXA7IGhp

c3RvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+T2JzZXJ2ZXIgVmFyaWF0aW9u

PC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3JkPlJl

cHJvZHVjaWJpbGl0eSBvZiBSZXN1bHRzPC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgt

UmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIw

MDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5NYXI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48

aXNibj4xNDM4LTkwMjkgKFByaW50KSYjeEQ7MTQzOC05MDEwIChMaW5raW5nKTwvaXNibj48YWNj

ZXNzaW9uLW51bT4xNzMyNTk5NTwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1

cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8xNzMyNTk5NTwvdXJsPjwvcmVs

YXRlZC11cmxzPjwvdXJscz48ZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMTA1NS9zLTIwMDct

OTYyOTI5PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1

dGhvcj5kZSBKb25nPC9BdXRob3I+PFllYXI+MjAxMjwvWWVhcj48UmVjTnVtPjIxNDE8L1JlY051

bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNDE8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5

IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRp

bWVzdGFtcD0iMTQzOTIzMzAwMiI+MjE0MTwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBu

YW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3Jz

PjxhdXRob3I+ZGUgSm9uZywgUC4gQS48L2F1dGhvcj48YXV0aG9yPkxlaW5lciwgVC48L2F1dGhv

cj48YXV0aG9yPkxhbW1lcnMsIEouIFcuPC9hdXRob3I+PGF1dGhvcj5HaWV0ZW1hLCBILiBBLjwv

YXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQg

b2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudHJlIFV0cmVjaHQsIEhQIEUuMDEu

MTMyLCBIZWlkZWxiZXJnbGFhbiAxMDAsIDM1ODQgQ1ggVXRyZWNodCwgVGhlIE5ldGhlcmxhbmRz

LiBwaW1kZWpvbmdAZ21haWwuY29tPC9hdXRoLWFkZHJlc3M+PHRpdGxlcz48dGl0bGU+Q2FuIGxv

dy1kb3NlIHVuZW5oYW5jZWQgY2hlc3QgQ1QgYmUgdXNlZCBmb3IgZm9sbG93LXVwIG9mIGx1bmcg

bm9kdWxlcz88L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvc2Vj

b25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QUpSLiBBbWVyaWNhbiBqb3VybmFsIG9mIHJvZW50Z2Vu

b2xvZ3k8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10aXRsZT5BSlIgQW0g

SiBSb2VudGdlbm9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+Nzc3LTgwPC9wYWdl

cz48dm9sdW1lPjE5OTwvdm9sdW1lPjxudW1iZXI+NDwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29y

ZD5BZHVsdDwva2V5d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgw

IGFuZCBvdmVyPC9rZXl3b3JkPjxrZXl3b3JkPkNvbnRyYXN0IE1lZGlhPC9rZXl3b3JkPjxrZXl3

b3JkPkRpYWdub3NpcywgRGlmZmVyZW50aWFsPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5

d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZyBOZW9wbGFzbXMvKnJh

ZGlvZ3JhcGh5L3NlY29uZGFyeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3

b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpYXRpb24gRG9zYWdlPC9rZXl3

b3JkPjxrZXl3b3JkPipSYWRpb2dyYXBoeSwgVGhvcmFjaWM8L2tleXdvcmQ+PGtleXdvcmQ+U29s

aXRhcnkgUHVsbW9uYXJ5IE5vZHVsZS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+KlRv

bW9ncmFwaHksIFgtUmF5IENvbXB1dGVkPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFy

PjIwMTI8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3Q8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRl

cz48aXNibj4xNTQ2LTMxNDEgKEVsZWN0cm9uaWMpJiN4RDswMzYxLTgwM1ggKExpbmtpbmcpPC9p

c2JuPjxhY2Nlc3Npb24tbnVtPjIyOTk3MzY3PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVk

LXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIyOTk3MzY3PC91

cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4yMjE0

L0FKUi4xMS43NTc3PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENp

dGU+PEF1dGhvcj5DaHJpc3RlPC9BdXRob3I+PFllYXI+MjAxMTwvWWVhcj48UmVjTnVtPjIxNzg8

L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxNzg8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5

cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFk

MGQiIHRpbWVzdGFtcD0iMTQ0MTU2Mjc4NiI+MjE3ODwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYt

dHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxh

dXRob3JzPjxhdXRob3I+Q2hyaXN0ZSwgQS48L2F1dGhvcj48YXV0aG9yPlRvcnJlbnRlLCBKLiBD

LjwvYXV0aG9yPjxhdXRob3I+TGluLCBNLjwvYXV0aG9yPjxhdXRob3I+WWVuLCBBLjwvYXV0aG9y

PjxhdXRob3I+SGFsbGV0dCwgUi48L2F1dGhvcj48YXV0aG9yPlJveWNob3VkaHVyeSwgSy48L2F1

dGhvcj48YXV0aG9yPlNjaG1pdHpiZXJnZXIsIEYuPC9hdXRob3I+PGF1dGhvcj5Wb2NrLCBQLjwv

YXV0aG9yPjxhdXRob3I+Um9vcywgSi48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRvcnM+

PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgU3RhbmZvcmQgVW5pdmVyc2l0

eSBTY2hvb2wgb2YgTWVkaWNpbmUsIFN0YW5mb3JkLCBDQSwgVVNBLiBhbmRyZWFzLmNocmlzdGVA

aW5zZWwuY2g8L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5DVCBzY3JlZW5pbmcgYW5kIGZv

bGxvdy11cCBvZiBsdW5nIG5vZHVsZXM6IGVmZmVjdHMgb2YgdHViZSBjdXJyZW50LXRpbWUgc2V0

dGluZyBhbmQgbm9kdWxlIHNpemUgYW5kIGRlbnNpdHkgb24gZGV0ZWN0YWJpbGl0eSBhbmQgb2Yg

dHViZSBjdXJyZW50LXRpbWUgc2V0dGluZyBvbiBhcHBhcmVudCBzaXplPC90aXRsZT48c2Vjb25k

YXJ5LXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxl

PkFKUi4gQW1lcmljYW4gam91cm5hbCBvZiByb2VudGdlbm9sb2d5PC9hbHQtdGl0bGU+PC90aXRs

ZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+QUpSIEFtIEogUm9lbnRnZW5vbDwvZnVsbC10aXRs

ZT48L3BlcmlvZGljYWw+PHBhZ2VzPjYyMy0zMDwvcGFnZXM+PHZvbHVtZT4xOTc8L3ZvbHVtZT48

bnVtYmVyPjM8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdv

cmQ+QWdlZDwva2V5d29yZD48a2V5d29yZD5BZ2VkLCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5

d29yZD5GZWFzaWJpbGl0eSBTdHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPkZlbWFsZTwva2V5d29y

ZD48a2V5d29yZD5Gb2xsb3ctVXAgU3R1ZGllczwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tl

eXdvcmQ+PGtleXdvcmQ+TG9naXN0aWMgTW9kZWxzPC9rZXl3b3JkPjxrZXl3b3JkPkx1bmcgTmVv

cGxhc21zL3BhdGhvbG9neS8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+TWFsZTwva2V5

d29yZD48a2V5d29yZD5NaWRkbGUgQWdlZDwva2V5d29yZD48a2V5d29yZD5Qcm9zcGVjdGl2ZSBT

dHVkaWVzPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlhdGlvbiBEb3NhZ2U8L2tleXdvcmQ+PGtleXdv

cmQ+UmFkaW9ncmFwaGljIEltYWdlIEludGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZDwv

a2V5d29yZD48a2V5d29yZD5TZW5zaXRpdml0eSBhbmQgU3BlY2lmaWNpdHk8L2tleXdvcmQ+PGtl

eXdvcmQ+U29mdHdhcmU8L2tleXdvcmQ+PGtleXdvcmQ+U29saXRhcnkgUHVsbW9uYXJ5IE5vZHVs

ZS9wYXRob2xvZ3kvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRpbWUgRmFjdG9yczwv

a2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZC8qbWV0aG9kczwva2V5

d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDExPC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+

U2VwPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTU0Ni0zMTQxIChFbGVjdHJvbmlj

KSYjeEQ7MDM2MS04MDNYIChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9uLW51bT4yMTg2MjgwNDwv

YWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5s

bS5uaWguZ292L3B1Ym1lZC8yMTg2MjgwNDwvdXJsPjwvcmVsYXRlZC11cmxzPjwvdXJscz48ZWxl

Y3Ryb25pYy1yZXNvdXJjZS1udW0+MTAuMjIxNC9BSlIuMTAuNTI4ODwvZWxlY3Ryb25pYy1yZXNv

dXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+SG9uZGE8L0F1dGhvcj48WWVh

cj4yMDA3PC9ZZWFyPjxSZWNOdW0+MTkwMDwvUmVjTnVtPjxyZWNvcmQ+PHJlYy1udW1iZXI+MTkw

MDwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBwPSJFTiIgZGItaWQ9ImZ2eng5NXph

eHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0YW1wPSIwIj4xOTAwPC9rZXk+PC9m

b3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBl

Pjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1dGhvcj5Ib25kYSwgTy48L2F1dGhvcj48YXV0aG9y

PlN1bWlrYXdhLCBILjwvYXV0aG9yPjxhdXRob3I+Sm9oa29oLCBULjwvYXV0aG9yPjxhdXRob3I+

VG9taXlhbWEsIE4uPC9hdXRob3I+PGF1dGhvcj5NaWhhcmEsIE4uPC9hdXRob3I+PGF1dGhvcj5J

bm91ZSwgQS48L2F1dGhvcj48YXV0aG9yPlRzdWJhbW90bywgTS48L2F1dGhvcj48YXV0aG9yPk5h

dHNhZywgSi48L2F1dGhvcj48YXV0aG9yPkhhbWFkYSwgUy48L2F1dGhvcj48YXV0aG9yPk5ha2Ft

dXJhLCBILjwvYXV0aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRl

cGFydG1lbnQgb2YgUmFkaW9sb2d5LCBPc2FrYSBVbml2ZXJzaXR5IEdyYWR1YXRlIFNjaG9vbCBv

ZiBNZWRpY2luZSwgMi0yIFlhbWFkYW9rYSwgU3VpdGEsIE9zYWthIDU2NS0wODcxLCBKYXBhbi4g

b2hvbmRhQHJhZGlvbC5tZWQub3Nha2EtdS5hYy5qcDwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRp

dGxlPkNvbXB1dGVyLWFzc2lzdGVkIGx1bmcgbm9kdWxlIHZvbHVtZXRyeSBmcm9tIG11bHRpLWRl

dGVjdG9yIHJvdyBDVDogaW5mbHVlbmNlIG9mIGltYWdlIHJlY29uc3RydWN0aW9uIHBhcmFtZXRl

cnM8L3RpdGxlPjxzZWNvbmRhcnktdGl0bGU+RXVyIEogUmFkaW9sPC9zZWNvbmRhcnktdGl0bGU+

PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0bGU+RXVyIEogUmFkaW9sPC9mdWxsLXRpdGxl

PjwvcGVyaW9kaWNhbD48cGFnZXM+MTA2LTEzPC9wYWdlcz48dm9sdW1lPjYyPC92b2x1bWU+PG51

bWJlcj4xPC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkb2xlc2NlbnQ8L2tleXdvcmQ+PGtl

eXdvcmQ+QWR1bHQ8L2tleXdvcmQ+PGtleXdvcmQ+QWdlZDwva2V5d29yZD48a2V5d29yZD5BZ2Vk

LCA4MCBhbmQgb3Zlcjwva2V5d29yZD48a2V5d29yZD5BbGdvcml0aG1zPC9rZXl3b3JkPjxrZXl3

b3JkPkZlbWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVu

ZyBOZW9wbGFzbXMvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxl

PC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBBZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPipSYWRpb2dy

YXBoaWMgSW1hZ2UgSW50ZXJwcmV0YXRpb24sIENvbXB1dGVyLUFzc2lzdGVkPC9rZXl3b3JkPjxr

ZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvcGF0aG9sb2d5LypyYWRpb2dyYXBoeTwv

a2V5d29yZD48a2V5d29yZD5TdGF0aXN0aWNzLCBOb25wYXJhbWV0cmljPC9rZXl3b3JkPjxrZXl3

b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLyptZXRob2RzPC9rZXl3b3JkPjwva2V5d29y

ZHM+PGRhdGVzPjx5ZWFyPjIwMDc8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9w

dWItZGF0ZXM+PC9kYXRlcz48YWNjZXNzaW9uLW51bT4xNzE2MTU3MTwvYWNjZXNzaW9uLW51bT48

dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L2VudHJl

ei9xdWVyeS5mY2dpP2NtZD1SZXRyaWV2ZSZhbXA7ZGI9UHViTWVkJmFtcDtkb3B0PUNpdGF0aW9u

JmFtcDtsaXN0X3VpZHM9MTcxNjE1NzEgPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPllvdW5nPC9BdXRob3I+PFllYXI+MjAxNTwvWWVhcj48

UmVjTnVtPjIxODA8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxODA8L3JlYy1udW1iZXI+

PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZy

NWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2MzAyOSI+MjE4MDwva2V5PjwvZm9yZWln

bi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29u

dHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+WW91bmcsIFMuPC9hdXRob3I+PGF1dGhvcj5LaW0s

IEguIEouPC9hdXRob3I+PGF1dGhvcj5LbywgTS4gTS48L2F1dGhvcj48YXV0aG9yPktvLCBXLiBX

LjwvYXV0aG9yPjxhdXRob3I+RmxvcmVzLCBDLjwvYXV0aG9yPjxhdXRob3I+TWNOaXR0LUdyYXks

IE0uIEYuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVw

YXJ0bWVudCBvZiBSYWRpb2xvZ2ljYWwgU2NpZW5jZXMsIFVuaXZlcnNpdHkgb2YgQ2FsaWZvcm5p

YSBMb3MgQW5nZWxlcywgTG9zIEFuZ2VsZXMsIENhbGlmb3JuaWEgOTAwMjQuPC9hdXRoLWFkZHJl

c3M+PHRpdGxlcz48dGl0bGU+VmFyaWFiaWxpdHkgaW4gQ1QgbHVuZy1ub2R1bGUgdm9sdW1ldHJ5

OiBFZmZlY3RzIG9mIGRvc2UgcmVkdWN0aW9uIGFuZCByZWNvbnN0cnVjdGlvbiBtZXRob2RzPC90

aXRsZT48c2Vjb25kYXJ5LXRpdGxlPk1lZCBQaHlzPC9zZWNvbmRhcnktdGl0bGU+PGFsdC10aXRs

ZT5NZWRpY2FsIHBoeXNpY3M8L2FsdC10aXRsZT48L3RpdGxlcz48cGVyaW9kaWNhbD48ZnVsbC10

aXRsZT5NZWQgUGh5czwvZnVsbC10aXRsZT48L3BlcmlvZGljYWw+PHBhZ2VzPjI2NzktODk8L3Bh

Z2VzPjx2b2x1bWU+NDI8L3ZvbHVtZT48bnVtYmVyPjU8L251bWJlcj48ZGF0ZXM+PHllYXI+MjAx

NTwveWVhcj48cHViLWRhdGVzPjxkYXRlPk1heTwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxp

c2JuPjAwOTQtMjQwNSAoUHJpbnQpJiN4RDswMDk0LTI0MDUgKExpbmtpbmcpPC9pc2JuPjxhY2Nl

c3Npb24tbnVtPjI1OTc5MDY2PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVy

bD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzI1OTc5MDY2PC91cmw+PC9yZWxh

dGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMTE4LzEuNDkxODkx

OTwvZWxlY3Ryb25pYy1yZXNvdXJjZS1udW0+PC9yZWNvcmQ+PC9DaXRlPjxDaXRlPjxBdXRob3I+

QXNocmFmPC9BdXRob3I+PFllYXI+MjAxMDwvWWVhcj48UmVjTnVtPjIxODI8L1JlY051bT48cmVj

b3JkPjxyZWMtbnVtYmVyPjIxODI8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0i

RU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFt

cD0iMTQ0MTU2Mzc2MCI+MjE4Mjwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJK

b3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRo

b3I+QXNocmFmLCBILjwvYXV0aG9yPjxhdXRob3I+ZGUgSG9vcCwgQi48L2F1dGhvcj48YXV0aG9y

PlNoYWtlciwgUy4gQi48L2F1dGhvcj48YXV0aG9yPkRpcmtzZW4sIEEuPC9hdXRob3I+PGF1dGhv

cj5CYWNoLCBLLiBTLjwvYXV0aG9yPjxhdXRob3I+SGFuc2VuLCBILjwvYXV0aG9yPjxhdXRob3I+

UHJva29wLCBNLjwvYXV0aG9yPjxhdXRob3I+UGVkZXJzZW4sIEouIEguPC9hdXRob3I+PC9hdXRo

b3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ks

IEdlbnRvZnRlIEhvc3BpdGFsLCBDb3BlbmhhZ2VuIFVuaXZlcnNpdHksIEhlbGxlcnVwLCBEZW5t

YXJrLiBIYXNlZW1AZGFkbG5ldC5kazwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPkx1bmcg

bm9kdWxlIHZvbHVtZXRyeTogc2VnbWVudGF0aW9uIGFsZ29yaXRobXMgd2l0aGluIHRoZSBzYW1l

IHNvZnR3YXJlIHBhY2thZ2UgY2Fubm90IGJlIHVzZWQgaW50ZXJjaGFuZ2VhYmx5PC90aXRsZT48

c2Vjb25kYXJ5LXRpdGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1

cm9wZWFuIHJhZGlvbG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRp

dGxlPkV1ciBSYWRpb2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xODc4LTg1PC9w

YWdlcz48dm9sdW1lPjIwPC92b2x1bWU+PG51bWJlcj44PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3

b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+KkFsZ29yaXRobXM8L2tleXdvcmQ+PGtleXdvcmQ+

RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnZSBJ

bnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+THVuZyBOZW9wbGFzbXMvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPk1hbGU8L2tl

eXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9kdWNpYmls

aXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNwZWNpZmlj

aXR5PC9rZXl3b3JkPjxrZXl3b3JkPipTb2Z0d2FyZTwva2V5d29yZD48a2V5d29yZD4qU29mdHdh

cmUgVmFsaWRhdGlvbjwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxl

LypyYWRpb2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5Ub21vZ3JhcGh5LCBYLVJheSBDb21wdXRl

ZC8qbWV0aG9kczwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48eWVhcj4yMDEwPC95ZWFyPjxw

dWItZGF0ZXM+PGRhdGU+QXVnPC9kYXRlPjwvcHViLWRhdGVzPjwvZGF0ZXM+PGlzYm4+MTQzMi0x

MDg0IChFbGVjdHJvbmljKSYjeEQ7MDkzOC03OTk0IChMaW5raW5nKTwvaXNibj48YWNjZXNzaW9u

LW51bT4yMDMwNjA4MjwvYWNjZXNzaW9uLW51bT48dXJscz48cmVsYXRlZC11cmxzPjx1cmw+aHR0

cDovL3d3dy5uY2JpLm5sbS5uaWguZ292L3B1Ym1lZC8yMDMwNjA4MjwvdXJsPjwvcmVsYXRlZC11

cmxzPjwvdXJscz48Y3VzdG9tMj4yODk5MDEyPC9jdXN0b20yPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMDA3L3MwMDMzMC0wMTAtMTc0OS16PC9lbGVjdHJvbmljLXJlc291cmNlLW51bT48

L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5DaHJpc3RlPC9BdXRob3I+PFllYXI+MjAxNDwv

WWVhcj48UmVjTnVtPjIxODM8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVyPjIxODM8L3JlYy1u

dW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4

c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2Mzg0NCI+MjE4Mzwva2V5Pjwv

Zm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlw

ZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Q2hyaXN0ZSwgQS48L2F1dGhvcj48YXV0

aG9yPkJyb25uaW1hbm4sIEEuPC9hdXRob3I+PGF1dGhvcj5Wb2NrLCBQLjwvYXV0aG9yPjwvYXV0

aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPkRlcGFydG1lbnQgb2YgRGlhZ25vc3Rp

YywgSW50ZXJ2ZW50aW9uYWwgYW5kIFBlZGlhdHJpYyBSYWRpb2xvZ3ksIFVuaXZlcnNpdHkgb2Yg

QmVybiwgSW5zZWxzcGl0YWwsIEJlcm4sIFN3aXR6ZXJsYW5kLjwvYXV0aC1hZGRyZXNzPjx0aXRs

ZXM+PHRpdGxlPlZvbHVtZXRyaWMgYW5hbHlzaXMgb2YgbHVuZyBub2R1bGVzIGluIGNvbXB1dGVk

IHRvbW9ncmFwaHkgKENUKTogY29tcGFyaXNvbiBvZiB0d28gZGlmZmVyZW50IHNlZ21lbnRhdGlv

biBhbGdvcml0aG0gc29mdHdhcmVzIGFuZCB0d28gZGlmZmVyZW50IHJlY29uc3RydWN0aW9uIGZp

bHRlcnMgb24gYXV0b21hdGVkIHZvbHVtZSBjYWxjdWxhdGlvbjwvdGl0bGU+PHNlY29uZGFyeS10

aXRsZT5BY3RhIFJhZGlvbDwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQtdGl0bGU+QWN0YSByYWRpb2xv

Z2ljYTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjdGEgUmFk

aW9sPC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NTQtNjE8L3BhZ2VzPjx2b2x1bWU+

NTU8L3ZvbHVtZT48bnVtYmVyPjE8L251bWJlcj48a2V5d29yZHM+PGtleXdvcmQ+KkFsZ29yaXRo

bXM8L2tleXdvcmQ+PGtleXdvcmQ+Q29uZS1CZWFtIENvbXB1dGVkIFRvbW9ncmFwaHkvKm1ldGhv

ZHM8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5

d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPlJhZGlvZ3JhcGhpYyBJbWFnZSBJ

bnRlcnByZXRhdGlvbiwgQ29tcHV0ZXItQXNzaXN0ZWQvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdv

cmQ+KlNvZnR3YXJlPC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUv

KnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMTQ8L3llYXI+

PHB1Yi1kYXRlcz48ZGF0ZT5GZWI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNjAw

LTA0NTUgKEVsZWN0cm9uaWMpJiN4RDswMjg0LTE4NTEgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Np

b24tbnVtPjIzODY0MDYzPC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5o

dHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzIzODY0MDYzPC91cmw+PC9yZWxhdGVk

LXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNlLW51bT4xMC4xMTc3LzAyODQxODUxMTM0

OTI0NTQ8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0

aG9yPlpoYW88L0F1dGhvcj48WWVhcj4yMDEzPC9ZZWFyPjxSZWNOdW0+MjEyNzwvUmVjTnVtPjxy

ZWNvcmQ+PHJlYy1udW1iZXI+MjEyNzwvcmVjLW51bWJlcj48Zm9yZWlnbi1rZXlzPjxrZXkgYXBw

PSJFTiIgZGItaWQ9ImZ2eng5NXpheHZkdmFrZXhzYWFwdnI1Y2VmdjBzZHNmYWQwZCIgdGltZXN0

YW1wPSIxNDA2MjE5MDA1Ij4yMTI3PC9rZXk+PC9mb3JlaWduLWtleXM+PHJlZi10eXBlIG5hbWU9

IkpvdXJuYWwgQXJ0aWNsZSI+MTc8L3JlZi10eXBlPjxjb250cmlidXRvcnM+PGF1dGhvcnM+PGF1

dGhvcj5aaGFvLCBZLiBSLjwvYXV0aG9yPjxhdXRob3I+T29pamVuLCBQLiBNLjwvYXV0aG9yPjxh

dXRob3I+RG9ycml1cywgTS4gRC48L2F1dGhvcj48YXV0aG9yPkhldXZlbG1hbnMsIE0uPC9hdXRo

b3I+PGF1dGhvcj5Cb2NrLCBHLiBILjwvYXV0aG9yPjxhdXRob3I+VmxpZWdlbnRoYXJ0LCBSLjwv

YXV0aG9yPjxhdXRob3I+T3Vka2VyaywgTS48L2F1dGhvcj48L2F1dGhvcnM+PC9jb250cmlidXRv

cnM+PGF1dGgtYWRkcmVzcz5DZW50ZXIgZm9yIE1lZGljYWwgSW1hZ2luZywgTm9ydGggRWFzdCBO

ZXRoZXJsYW5kcywgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBD

ZW50ZXIgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcyBEZXBhcnRtZW50IG9m

IFJhZGlvbG9neSwgVW5pdmVyc2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBD

ZW50ZXIgR3JvbmluZ2VuLCBHcm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy4mI3hEO0NlbnRlciBm

b3IgTWVkaWNhbCBJbWFnaW5nLCBOb3J0aCBFYXN0IE5ldGhlcmxhbmRzLCBVbml2ZXJzaXR5IG9m

IEdyb25pbmdlbiwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5nZW4sIEdyb25pbmdl

biwgdGhlIE5ldGhlcmxhbmRzIERlcGFydG1lbnQgb2YgUmFkaW9sb2d5LCBVbml2ZXJzaXR5IG9m

IEdyb25pbmdlbiwgVW5pdmVyc2l0eSBNZWRpY2FsIENlbnRlciBHcm9uaW5nZW4sIEdyb25pbmdl

biwgdGhlIE5ldGhlcmxhbmRzIHAubS5hLnZhbi5vb3llbkB1bWNnLm5sLiYjeEQ7Q2VudGVyIGZv

ciBNZWRpY2FsIEltYWdpbmcsIE5vcnRoIEVhc3QgTmV0aGVybGFuZHMsIFVuaXZlcnNpdHkgb2Yg

R3JvbmluZ2VuLCBVbml2ZXJzaXR5IE1lZGljYWwgQ2VudGVyIEdyb25pbmdlbiwgR3JvbmluZ2Vu

LCB0aGUgTmV0aGVybGFuZHMuJiN4RDtEZXBhcnRtZW50IG9mIEVwaWRlbWlvbG9neSwgVW5pdmVy

c2l0eSBvZiBHcm9uaW5nZW4sIFVuaXZlcnNpdHkgTWVkaWNhbCBDZW50ZXIgR3JvbmluZ2VuLCBH

cm9uaW5nZW4sIHRoZSBOZXRoZXJsYW5kcy48L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5D

b21wYXJpc29uIG9mIHRocmVlIHNvZnR3YXJlIHN5c3RlbXMgZm9yIHNlbWktYXV0b21hdGljIHZv

bHVtZXRyeSBvZiBwdWxtb25hcnkgbm9kdWxlcyBvbiBiYXNlbGluZSBhbmQgZm9sbG93LXVwIENU

IGV4YW1pbmF0aW9uczwvdGl0bGU+PHNlY29uZGFyeS10aXRsZT5BY3RhIFJhZGlvbDwvc2Vjb25k

YXJ5LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFjdGEgUmFkaW9sPC9m

dWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48cGFnZXM+NjkxLTY5ODwvcGFnZXM+PHZvbHVtZT41NTwv

dm9sdW1lPjxudW1iZXI+NjwvbnVtYmVyPjxlZGl0aW9uPjIwMTMvMTAvMTg8L2VkaXRpb24+PGRh

dGVzPjx5ZWFyPjIwMTM8L3llYXI+PHB1Yi1kYXRlcz48ZGF0ZT5PY3QgMTY8L2RhdGU+PC9wdWIt

ZGF0ZXM+PC9kYXRlcz48aXNibj4xNjAwLTA0NTUgKEVsZWN0cm9uaWMpJiN4RDswMjg0LTE4NTEg

KExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjI0MTMyNzY2PC9hY2Nlc3Npb24tbnVtPjx1

cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVk

LzI0MTMyNzY2PC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVjdHJvbmljLXJlc291cmNl

LW51bT4xMC4xMTc3LzAyODQxODUxMTM1MDgxNzc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjxs

YW5ndWFnZT5Fbmc8L2xhbmd1YWdlPjwvcmVjb3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPkdhdnJp

ZWxpZGVzPC9BdXRob3I+PFllYXI+MjAwOTwvWWVhcj48UmVjTnVtPjIxODQ8L1JlY051bT48cmVj

b3JkPjxyZWMtbnVtYmVyPjIxODQ8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0i

RU4iIGRiLWlkPSJmdnp4OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFt

cD0iMTQ0MTU2Mzk5NSI+MjE4NDwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJK

b3VybmFsIEFydGljbGUiPjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRo

b3I+R2F2cmllbGlkZXMsIE0uIEEuPC9hdXRob3I+PGF1dGhvcj5LaW5uYXJkLCBMLiBNLjwvYXV0

aG9yPjxhdXRob3I+TXllcnMsIEsuIEouPC9hdXRob3I+PGF1dGhvcj5QZXRyaWNrLCBOLjwvYXV0

aG9yPjwvYXV0aG9ycz48L2NvbnRyaWJ1dG9ycz48YXV0aC1hZGRyZXNzPk5hdGlvbmFsIEluc3Rp

dHV0ZSBvZiBCaW9tZWRpY2FsIEltYWdpbmcgYW5kIEJpb2VuZ2luZWVyaW5nL0NlbnRlciBmb3Ig

RGV2aWNlcyBhbmQgUmFkaW9sb2dpY2FsIEhlYWx0aCwgVS5TLiBGb29kIGFuZCBEcnVnIEFkbWlu

aXN0cmF0aW9uLCBTaWx2ZXIgU3ByaW5nLCBNRCAyMDk5My0wMDAyLCBVU0EuIG1hcmlvcy5nYXZy

aWVsaWRlc0BmZGEuaGhzLmdvdjwvYXV0aC1hZGRyZXNzPjx0aXRsZXM+PHRpdGxlPk5vbmNhbGNp

ZmllZCBsdW5nIG5vZHVsZXM6IHZvbHVtZXRyaWMgYXNzZXNzbWVudCB3aXRoIHRob3JhY2ljIENU

PC90aXRsZT48c2Vjb25kYXJ5LXRpdGxlPlJhZGlvbG9neTwvc2Vjb25kYXJ5LXRpdGxlPjxhbHQt

dGl0bGU+UmFkaW9sb2d5PC9hbHQtdGl0bGU+PC90aXRsZXM+PHBlcmlvZGljYWw+PGZ1bGwtdGl0

bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvcGVyaW9kaWNhbD48YWx0LXBlcmlvZGljYWw+PGZ1

bGwtdGl0bGU+UmFkaW9sb2d5PC9mdWxsLXRpdGxlPjwvYWx0LXBlcmlvZGljYWw+PHBhZ2VzPjI2

LTM3PC9wYWdlcz48dm9sdW1lPjI1MTwvdm9sdW1lPjxudW1iZXI+MTwvbnVtYmVyPjxrZXl3b3Jk

cz48a2V5d29yZD4qQWxnb3JpdGhtczwva2V5d29yZD48a2V5d29yZD5DYWxjaW5vc2lzL3JhZGlv

Z3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkh1bWFuczwva2V5d29yZD48a2V5d29yZD5JbWFnaW5n

LCBUaHJlZS1EaW1lbnNpb25hbC8qbWV0aG9kczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3Bs

YXNtcy8qcmFkaW9ncmFwaHk8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIEVu

aGFuY2VtZW50L21ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmFkaW9ncmFwaGljIEltYWdlIElu

dGVycHJldGF0aW9uLCBDb21wdXRlci1Bc3Npc3RlZC8qbWV0aG9kczwva2V5d29yZD48a2V5d29y

ZD5SYWRpb2dyYXBoeSwgVGhvcmFjaWMvKm1ldGhvZHM8L2tleXdvcmQ+PGtleXdvcmQ+UmVwcm9k

dWNpYmlsaXR5IG9mIFJlc3VsdHM8L2tleXdvcmQ+PGtleXdvcmQ+U2Vuc2l0aXZpdHkgYW5kIFNw

ZWNpZmljaXR5PC9rZXl3b3JkPjxrZXl3b3JkPlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJh

ZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkLypt

ZXRob2RzPC9rZXl3b3JkPjwva2V5d29yZHM+PGRhdGVzPjx5ZWFyPjIwMDk8L3llYXI+PHB1Yi1k

YXRlcz48ZGF0ZT5BcHI8L2RhdGU+PC9wdWItZGF0ZXM+PC9kYXRlcz48aXNibj4xNTI3LTEzMTUg

KEVsZWN0cm9uaWMpJiN4RDswMDMzLTg0MTkgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVt

PjE5MzMyODQ0PC9hY2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8v

d3d3Lm5jYmkubmxtLm5paC5nb3YvcHVibWVkLzE5MzMyODQ0PC91cmw+PC9yZWxhdGVkLXVybHM+

PC91cmxzPjxjdXN0b20yPjI2NjM1ODE8L2N1c3RvbTI+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVt

PjEwLjExNDgvcmFkaW9sLjI1MTEwNzE4OTc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVj

b3JkPjwvQ2l0ZT48Q2l0ZT48QXV0aG9yPk1hcnRlbjwvQXV0aG9yPjxZZWFyPjIwMDc8L1llYXI+

PFJlY051bT4yMTg1PC9SZWNOdW0+PHJlY29yZD48cmVjLW51bWJlcj4yMTg1PC9yZWMtbnVtYmVy

Pjxmb3JlaWduLWtleXM+PGtleSBhcHA9IkVOIiBkYi1pZD0iZnZ6eDk1emF4dmR2YWtleHNhYXB2

cjVjZWZ2MHNkc2ZhZDBkIiB0aW1lc3RhbXA9IjE0NDE1NjQwOTciPjIxODU8L2tleT48L2ZvcmVp

Z24ta2V5cz48cmVmLXR5cGUgbmFtZT0iSm91cm5hbCBBcnRpY2xlIj4xNzwvcmVmLXR5cGU+PGNv

bnRyaWJ1dG9ycz48YXV0aG9ycz48YXV0aG9yPk1hcnRlbiwgSy48L2F1dGhvcj48YXV0aG9yPkVu

Z2Vsa2UsIEMuPC9hdXRob3I+PC9hdXRob3JzPjwvY29udHJpYnV0b3JzPjxhdXRoLWFkZHJlc3M+

RGVwYXJ0bWVudCBvZiBSYWRpb2xvZ3ksIEtsaW5pa3VtIHJlY2h0cyBkZXIgSXNhciwgVGVjaG5p

Y2FsIFVuaXZlcnNpdHkgTXVuaWNoLCBJc21hbmluZ2Vyc3RyLiAyMiwgODE2NzUsIE11bmljaCwg

R2VybWFueS4gS2F0aGFyaW5hLm1hcnRlbkByb2UubWVkLnR1LW11ZW5jaGVuLmRlPC9hdXRoLWFk

ZHJlc3M+PHRpdGxlcz48dGl0bGU+Q29tcHV0ZXItYWlkZWQgZGV0ZWN0aW9uIGFuZCBhdXRvbWF0

ZWQgQ1Qgdm9sdW1ldHJ5IG9mIHB1bG1vbmFyeSBub2R1bGVzPC90aXRsZT48c2Vjb25kYXJ5LXRp

dGxlPkV1ciBSYWRpb2w8L3NlY29uZGFyeS10aXRsZT48YWx0LXRpdGxlPkV1cm9wZWFuIHJhZGlv

bG9neTwvYWx0LXRpdGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkV1ciBSYWRp

b2w8L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz44ODgtOTAxPC9wYWdlcz48dm9sdW1l

PjE3PC92b2x1bWU+PG51bWJlcj40PC9udW1iZXI+PGtleXdvcmRzPjxrZXl3b3JkPkFkdWx0PC9r

ZXl3b3JkPjxrZXl3b3JkPkFnZWQ8L2tleXdvcmQ+PGtleXdvcmQ+KkRpYWdub3NpcywgQ29tcHV0

ZXItQXNzaXN0ZWQ8L2tleXdvcmQ+PGtleXdvcmQ+RmVtYWxlPC9rZXl3b3JkPjxrZXl3b3JkPkh1

bWFuczwva2V5d29yZD48a2V5d29yZD5MdW5nIE5lb3BsYXNtcy8qZGlhZ25vc2lzPC9rZXl3b3Jk

PjxrZXl3b3JkPk1hbGU8L2tleXdvcmQ+PGtleXdvcmQ+TWlkZGxlIEFnZWQ8L2tleXdvcmQ+PGtl

eXdvcmQ+TmVvcGxhc20gTWV0YXN0YXNpcy8qZGlhZ25vc2lzPC9rZXl3b3JkPjxrZXl3b3JkPk9i

c2VydmVyIFZhcmlhdGlvbjwva2V5d29yZD48a2V5d29yZD5SZXByb2R1Y2liaWxpdHkgb2YgUmVz

dWx0czwva2V5d29yZD48a2V5d29yZD5Tb2xpdGFyeSBQdWxtb25hcnkgTm9kdWxlLypkaWFnbm9z

aXM8L2tleXdvcmQ+PGtleXdvcmQ+KlRvbW9ncmFwaHksIFgtUmF5IENvbXB1dGVkL21ldGhvZHM8

L2tleXdvcmQ+PC9rZXl3b3Jkcz48ZGF0ZXM+PHllYXI+MjAwNzwveWVhcj48cHViLWRhdGVzPjxk

YXRlPkFwcjwvZGF0ZT48L3B1Yi1kYXRlcz48L2RhdGVzPjxpc2JuPjA5MzgtNzk5NCAoUHJpbnQp

JiN4RDswOTM4LTc5OTQgKExpbmtpbmcpPC9pc2JuPjxhY2Nlc3Npb24tbnVtPjE3MDQ3OTYxPC9h

Y2Nlc3Npb24tbnVtPjx1cmxzPjxyZWxhdGVkLXVybHM+PHVybD5odHRwOi8vd3d3Lm5jYmkubmxt

Lm5paC5nb3YvcHVibWVkLzE3MDQ3OTYxPC91cmw+PC9yZWxhdGVkLXVybHM+PC91cmxzPjxlbGVj

dHJvbmljLXJlc291cmNlLW51bT4xMC4xMDA3L3MwMDMzMC0wMDYtMDQxMC0zPC9lbGVjdHJvbmlj

LXJlc291cmNlLW51bT48L3JlY29yZD48L0NpdGU+PENpdGU+PEF1dGhvcj5Cb2xsPC9BdXRob3I+

PFllYXI+MjAwNDwvWWVhcj48UmVjTnVtPjIxODc8L1JlY051bT48cmVjb3JkPjxyZWMtbnVtYmVy

PjIxODc8L3JlYy1udW1iZXI+PGZvcmVpZ24ta2V5cz48a2V5IGFwcD0iRU4iIGRiLWlkPSJmdnp4

OTV6YXh2ZHZha2V4c2FhcHZyNWNlZnYwc2RzZmFkMGQiIHRpbWVzdGFtcD0iMTQ0MTU2NDI4MCI+

MjE4Nzwva2V5PjwvZm9yZWlnbi1rZXlzPjxyZWYtdHlwZSBuYW1lPSJKb3VybmFsIEFydGljbGUi

PjE3PC9yZWYtdHlwZT48Y29udHJpYnV0b3JzPjxhdXRob3JzPjxhdXRob3I+Qm9sbCwgRC4gVC48

L2F1dGhvcj48YXV0aG9yPkdpbGtlc29uLCBSLiBDLjwvYXV0aG9yPjxhdXRob3I+RmxlaXRlciwg

VC4gUi48L2F1dGhvcj48YXV0aG9yPkJsYWNraGFtLCBLLiBBLjwvYXV0aG9yPjxhdXRob3I+RHVl

cmssIEouIEwuPC9hdXRob3I+PGF1dGhvcj5MZXdpbiwgSi4gUy48L2F1dGhvcj48L2F1dGhvcnM+

PC9jb250cmlidXRvcnM+PGF1dGgtYWRkcmVzcz5EZXBhcnRtZW50IG9mIFJhZGlvbG9neSwgVW5p

dmVyc2l0eSBIb3NwaXRhbHMgb2YgQ2xldmVsYW5kLCBDYXNlIFdlc3Rlcm4gUmVzZXJ2ZSBVbml2

ZXJzaXR5LCAxMTEwMCBFdWNsaWQgQXZlbnVlLCBDbGV2ZWxhbmQsIE9IIDQ0MTA2LTUwNTYsIFVT

QS4gYm9sbEB1aHJhZC5jb208L2F1dGgtYWRkcmVzcz48dGl0bGVzPjx0aXRsZT5Wb2x1bWV0cmlj

IGFzc2Vzc21lbnQgb2YgcHVsbW9uYXJ5IG5vZHVsZXMgd2l0aCBFQ0ctZ2F0ZWQgTURDVDwvdGl0

bGU+PHNlY29uZGFyeS10aXRsZT5BSlIgQW0gSiBSb2VudGdlbm9sPC9zZWNvbmRhcnktdGl0bGU+

PGFsdC10aXRsZT5BSlIuIEFtZXJpY2FuIGpvdXJuYWwgb2Ygcm9lbnRnZW5vbG9neTwvYWx0LXRp

dGxlPjwvdGl0bGVzPjxwZXJpb2RpY2FsPjxmdWxsLXRpdGxlPkFKUiBBbSBKIFJvZW50Z2Vub2w8

L2Z1bGwtdGl0bGU+PC9wZXJpb2RpY2FsPjxwYWdlcz4xMjE3LTIzPC9wYWdlcz48dm9sdW1lPjE4

Mzwvdm9sdW1lPjxudW1iZXI+NTwvbnVtYmVyPjxrZXl3b3Jkcz48a2V5d29yZD5BZHVsdDwva2V5

d29yZD48a2V5d29yZD5BZ2VkPC9rZXl3b3JkPjxrZXl3b3JkPkFnZWQsIDgwIGFuZCBvdmVyPC9r

ZXl3b3JkPjxrZXl3b3JkPipFbGVjdHJvY2FyZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3JkPkZl

bWFsZTwva2V5d29yZD48a2V5d29yZD5IdW1hbnM8L2tleXdvcmQ+PGtleXdvcmQ+THVuZy9yYWRp

b2dyYXBoeTwva2V5d29yZD48a2V5d29yZD5NYWxlPC9rZXl3b3JkPjxrZXl3b3JkPk1pZGRsZSBB

Z2VkPC9rZXl3b3JkPjxrZXl3b3JkPlBoYW50b21zLCBJbWFnaW5nPC9rZXl3b3JkPjxrZXl3b3Jk

PlNvbGl0YXJ5IFB1bG1vbmFyeSBOb2R1bGUvKnJhZGlvZ3JhcGh5PC9rZXl3b3JkPjxrZXl3b3Jk

PipUb21vZ3JhcGh5LCBYLVJheSBDb21wdXRlZDwva2V5d29yZD48L2tleXdvcmRzPjxkYXRlcz48

eWVhcj4yMDA0PC95ZWFyPjxwdWItZGF0ZXM+PGRhdGU+Tm92PC9kYXRlPjwvcHViLWRhdGVzPjwv

ZGF0ZXM+PGlzYm4+MDM2MS04MDNYIChQcmludCkmI3hEOzAzNjEtODAzWCAoTGlua2luZyk8L2lz

Ym4+PGFjY2Vzc2lvbi1udW0+MTU1MDUyODA8L2FjY2Vzc2lvbi1udW0+PHVybHM+PHJlbGF0ZWQt

dXJscz48dXJsPmh0dHA6Ly93d3cubmNiaS5ubG0ubmloLmdvdi9wdWJtZWQvMTU1MDUyODA8L3Vy

bD48L3JlbGF0ZWQtdXJscz48L3VybHM+PGVsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjEwLjIyMTQv

YWpyLjE4My41LjE4MzEyMTc8L2VsZWN0cm9uaWMtcmVzb3VyY2UtbnVtPjwvcmVjb3JkPjwvQ2l0

ZT48L0VuZE5vdGU+

ADDIN EN.CITE.DATA (52-66)AppendicesAppendix A: Acknowledgements and AttributionsThis document is proffered by the Radiological Society of North America (RSNA) Lung Nodule Volume Assessment and Monitoring in Low Dose CT Screening Working Group of the Volumetric Computed Tomography (v-CT) Technical Committee. The group is composed of scientists representing academia, the imaging device manufacturers, image analysis tool software developers, image analysis laboratories, biopharmaceutical industry, government research organizations, professional societies, and regulatory agencies, among others. All work is classified as pre-competitive. A more detailed description of the v-CT committee and its work can be found at the following web link: . The Lung Nodule Volume Assessment and Monitoring in Low Dose CT Screening Working Group (in alphabetical order):Denise Aberle, MDUniversity of California, Los Angeles (UCLA)Samuel G. Armato III, PhDUniversity of ChicagoRicardo Avila, MSAccumetra, LLCRoshni Bhagalia, PhDGE Global ResearchMatthew Blum, MD, FACSUniversity of Colorado HealthKirsten L. Boedeker, PhDToshiba Medical Research Institute-USA, Inc.Andrew J. Buckler, MSElucid Bioimaging Inc.Paul L. Carson, PhDUniversity of Michigan Medical CenterDominic Crotty, PhDGE HealthcareHarry de Koning, MD, PhDErasmus University Medical Center Ekta N. Dharaiya, MSPhilips HealthcareLes Folio, DO, MPHNational Institutes of Health (NIH)Matthew Fuld, PhDSiemens AG HealthcareKavita Garg, MDUniversity of Colorado, DenverDavid S. Gierada, MDWashington University, Mallinckrodt Institute of RadiologyFergus Gleeson, MBBSChurchill Hospital--Headington, (Oxford, UK) / British Society of Thoracic ImagingGregory V. Goldmacher, MD, PhD, MBAMerckJin Mo Goo, MD, PhDSeoul National University Hospital (South Korea)Tomasz Grodzki, MD, FETCSRegional Hospital for Lung Diseases/European Society of Thoracic Surgeons (Poland)Bernice E. Hoppel, PhDToshiba Medical Research Institute USA, Inc.Edward F. Jackson, PhDUniversity of Wisconsin, School of Medicine & Public HealthPhilip F. Judy, PhDHarvard-Brigham and Women's HospitalElla A. Kazerooni, MDUniversity of MichiganDavid A. Lynch, MDNational Jewish HealthAshkan A. Malayeri, MDNIH/CC/DRDTheresa C. McLoud, MDMassachusetts General Hospital/Society for Thoracic RadiologyMichael McNitt-Gray, PhDUniversity of California, Los Angeles (UCLA)Steve Metz, PhDPhilipsJames L. Mulshine, MDRush University Medical CenterReginald Munden, MD, DMD, MBAHouston Methodist Hospital-Physician OrganizationNancy Obuchowski, PhDCleveland Clinic FoundationMichael O’Connor, MBA, PhDPAREXEL InternationalMatthijs Oudkerk, MD, PhDUniversity Medical Center Groningen (the Netherlands)Eric S. Perlman, MDPerlman Advisory Group, LLCMathias Prokop, MD, PhDRadboud University Medical Center (Nijmegen, the Netherlands)James G. Ravenel, MDMedical University of South CarolinaAnthony P. Reeves, PhDCornell UniversityMarthony Robins, PhDDuke UniversityEhsan Samei, PhDDuke UniversityLawrence H. Schwartz, MDNew York Presbyterian Hospital/Columbia University Medical Center Jenifer Siegelman, MD, MPHHarvard Medical School Brigham and Women's HospitalMario Silva, MDUniversity of Parma (Italy)Gary Smith, MDVanderbilt UniversityDaniel C. Sullivan, MDDuke UniversityRozemarijn Vliegenthart, MD, PhDUniversity Medical Center Groningen (the Netherlands)David F. Yankelevitz, MDMount Sinai HospitalLifeng Yu, PhDMayo ClinicThe Lung Nodule Volume Assessment and Monitoring in Low Dose CT Screening Working Group is deeply grateful for the support and technical assistance provided by the staff of the Radiological Society of North America:Fiona Miller, DirectorDepartment of ResearchJoseph Koudelik, Assistant DirectorScientific Affairs, Department of ResearchJulie Lisiecki,? ManagerScientific Affairs, Department of ResearchSusan Weinmann, Senior Administrative AssistantDepartment of ResearchAppendix B: Background Information B.1 Summary of selected references on nodule volumetry accuracy Summary of selected references on nodule volumetry precision C: Metrology Methods Obuchowski NA, Buckler A, Kinahan PE, Chen-Mayer H, Petrick N, Barboriak DP, Bullen J, Barnhart H, Sullivan DC. Statistical Issues in Testing Conformance with the Quantitative Imaging Biomarker Alliance (QIBA) Profile Claims. Academic Radiology in press.Kessler LG, Barnhart HX, Buckler AJ, et al. The emerging science of quantitative imaging biomarkers: terminology and definitions for scientific studies and for regulatory submissions. SMMR 2015; 24: 9-26.Raunig D, McShane LM, Pennello G, et al. Quantitative imaging biomarkers: a 235 review of statistical methods for technical performance assessment. SMMR 2015; 24: 27- 67.Obuchowski NA, Reeves AP, Huang EP, et al. Quantitative Imaging Biomarkers: A Review of Statistical Methods for Computer Algorithm Comparisons. SMMR 2015; 24: 240 68-106. ................
................

In order to avoid copyright disputes, this page is only a partial summary.

Google Online Preview   Download