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Magnetic Resonance in Medicine|September 26, 2009
Tyrosine polyethylene glycol (PEG)-micelle magnetic resonance contrast agent for the detection of lipid rich areas in atherosclerotic plaqueAnne Beilvert, David P Cormode, Frédéric Chaubet, et al.
Journal of Cardiovascular Magnetic Resonance : Official Journal of the Society for Cardiovascular Magnetic Resonance|June 8, 2006
Carotid black blood MRI burden of atherosclerotic disease assessment correlates with ultrasound intima-media thicknessVenkatesh Mani, Silvia H Aguiar, Vitalii V Itskovich, et al.
JACC. Cardiovascular Imaging|May 19, 2012
Feasibility of [18F]-2-Fluoro-A85380-PET imaging of human vascular nicotinic acetylcholine receptors in vivoJan Bucerius, Christoph Manka, Jörn Schmaljohann, et al.
Circulation|June 9, 2004
Lipid-rich atherosclerotic plaques detected by gadofluorine-enhanced in vivo magnetic resonance imagingMarc Sirol, Vitalii V Itskovich, Venkatesh Mani, et al.
Journal of Magnetic Resonance Imaging : JMRI|May 28, 2008
Evaluation of neovessels in atherosclerotic plaques of rabbits using an albumin-binding intravascular contrast agent and MRIJean-Christophe Cornily, Fabien Hyafil, Claudia Calcagno, et al.
Journal of Nuclear Cardiology : Official Publication of the American Society of Nuclear Cardiology|May 28, 2021
Scan-rescan measurement repeatability of 18F-FDG PET/MR imaging of vascular inflammationPhilip M Robson, Audrey Kaufman, Alison Pruzan, et al.
Magnetic Resonance in Medicine|August 12, 2006
MRI to detect atherosclerosis with gadolinium-containing immunomicelles targeting the macrophage scavenger receptorMichael J Lipinski, Vardan Amirbekian, Juan C Frias, et al.
Bio Systems|January 27, 2007
Automated classification of atherosclerotic plaque from magnetic resonance images using predictive modelsRussell W Anderson, Christopher Stomberg, Charles W Hahm, et al.
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