1naresh2naresh
Array ( [urn:ac.highwire.org:guest:identity] => Array ( [runtime-id] => urn:ac.highwire.org:guest:identity [type] => guest [service-id] => ajnr-ac.highwire.org [access-type] => Controlled [privilege] => Array ( [urn:ac.highwire.org:guest:privilege] => Array ( [runtime-id] => urn:ac.highwire.org:guest:privilege [type] => privilege-set [privilege-set] => GUEST ) ) [credentials] => Array ( [method] => guest ) ) [c18c522a-947e-47c1-922e-26337ca27ff9] => Array ( [runtime-id] => c18c522a-947e-47c1-922e-26337ca27ff9 [type] => toll-free-key [service-id] => ajnr-ac.highwire.org [access-type] => Controlled [privilege] => Array ( [fecc0e3d-2658-4aeb-b1a4-7631a6de3d80] => Array ( [runtime-id] => fecc0e3d-2658-4aeb-b1a4-7631a6de3d80 [type] => toll-free-key ) ) [credentials] => Array ( [method] => toll-free-key [value] => tf_ipsecsha;f59e0ef89fbbc493d7b4e73ea58ae6cf37027cc9 ) ) ) 1naresh2nareshArray ( [urn:ac.highwire.org:guest:identity] => Array ( [runtime-id] => urn:ac.highwire.org:guest:identity [type] => guest [service-id] => ajnr-ac.highwire.org [access-type] => OpenAccess [privilege] => Array ( [urn:ac.highwire.org:guest:privilege] => Array ( [runtime-id] => urn:ac.highwire.org:guest:privilege [type] => privilege-set [privilege-set] => GUEST ) ) [credentials] => Array ( [method] => guest ) ) [a6a52943-631f-4b1e-b438-20bafb3652ea] => Array ( [runtime-id] => a6a52943-631f-4b1e-b438-20bafb3652ea [type] => toll-free-key [service-id] => ajnr-ac.highwire.org [access-type] => OpenAccess [privilege] => Array ( [6cb47a9d-6d98-499a-9468-734fcfead4d6] => Array ( [runtime-id] => 6cb47a9d-6d98-499a-9468-734fcfead4d6 [type] => toll-free-key ) ) [credentials] => Array ( [method] => toll-free-key [value] => tf_ipsecsha;f59e0ef89fbbc493d7b4e73ea58ae6cf37027cc9 ) ) ) PT - JOURNAL ARTICLE AU - Wu, Y. AU - Chang, W. AU - Johnson, K.M. AU - Velikina, J. AU - Rowley, H. AU - Mistretta, C. AU - Turski, P. TI - Fast Whole-Brain 4D Contrast-Enhanced MR Angiography with Velocity Encoding Using Undersampled Radial Acquisition and Highly Constrained Projection Reconstruction: Image-Quality Assessment in Volunteer Subjects AID - 10.3174/ajnr.A2048 DP - 2011 Mar 01 TA - American Journal of Neuroradiology PG - E47--E50 VI - 32 IP - 3 4099 - http://www.ajnr.org/content/32/3/E47.short 4100 - http://www.ajnr.org/content/32/3/E47.full SO - Am. J. Neuroradiol.2011 Mar 01; 32 AB - SUMMARY: We report on the image quality obtained by using fast contrast-enhanced whole-brain 4D radial MRA with 0.75-second temporal resolution, isotropic submillimeter spatial resolution, and velocity encoding (HYPRFlow). Images generated by HYPR-LR by using the velocity-encoded data as the constraining image were of diagnostic quality. In addition, we demonstrate that measurements of shear stress within the middle cerebral artery can be derived from the high-resolution 3D velocity data. AVarteriovenousCE-VIPRcontrast-enhanced VIPRHYPRhighly constrained back-projectionHYPRFlowHYPR with phase contrast as constraintHYPR-LRHYPR local reconstructionMCAmiddle cerebral arteryMIPmaximum intensity projectionMRAMR angiographyPC-VIPRphase-contrast VIPRSNRsignal intensity–to-noise ratioVIPRvastly undersampled isotropic projection reconstructionWSSwall shear stress