MRI of carotid atherosclerosis
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Chun Yuan | Thomas Hatsukami | C. Yuan | T. Hatsukami | Z. Miller | Minako Oikawa | Zach Miller | M. Oikawa
[1] S. Cramer,et al. Predictors of Surface Disruption with MR Imaging in Asymptomatic Carotid Artery Stenosis , 2010, American Journal of Neuroradiology.
[2] C. Yuan,et al. Geometric and Compositional Appearance of Atheroma in an Angiographically Normal Carotid Artery in Patients with Atherosclerosis , 2010, American Journal of Neuroradiology.
[3] Martin J Graves,et al. Utility of high resolution MR imaging to assess carotid plaque morphology: a comparison of acute symptomatic, recently symptomatic and asymptomatic patients with carotid artery disease. , 2009, Atherosclerosis.
[4] C. Yuan,et al. Arterial remodeling in [corrected] subclinical carotid artery disease. , 2009, JACC. Cardiovascular imaging.
[5] Subha V. Raman,et al. Initial feasibility of a multi‐station high resolution three‐dimensional dark blood angiography protocol for the assessment of peripheral arterial disease , 2009, Journal of magnetic resonance imaging : JMRI.
[6] D. Gladstone,et al. Moderate carotid artery stenosis: MR imaging-depicted intraplaque hemorrhage predicts risk of cerebrovascular ischemic events in asymptomatic men. , 2009, Radiology.
[7] Jaladhar Neelavalli,et al. Imaging the vessel wall in major peripheral arteries using susceptibility‐weighted imaging , 2009, Journal of magnetic resonance imaging : JMRI.
[8] W. Kerwin,et al. Magnetic [corrected] resonance imaging [corrected] features of the disruption-prone and the disrupted carotid plaque. , 2009, JACC. Cardiovascular imaging.
[9] Martin J Graves,et al. The ATHEROMA (Atorvastatin Therapy: Effects on Reduction of Macrophage Activity) Study. Evaluation using ultrasmall superparamagnetic iron oxide-enhanced magnetic resonance imaging in carotid disease. , 2009, Journal of the American College of Cardiology.
[10] Chun Yuan,et al. Carotid plaque morphology and composition: initial comparison between 1.5- and 3.0-T magnetic field strengths. , 2008, Radiology.
[11] P. Rothwell,et al. Critical Cap Thickness and Rupture in Symptomatic Carotid Plaques: The Oxford Plaque Study , 2008, Stroke.
[12] C. Yuan,et al. Prevalence of American Heart Association type VI carotid atherosclerotic lesions identified by magnetic resonance imaging for different levels of stenosis as measured by duplex ultrasound. , 2008, Journal of the American College of Cardiology.
[13] T. Nakata,et al. Clinical implications of midventricular obstruction and intravenous propranolol use in transient left ventricular apical ballooning (Tako-tsubo cardiomyopathy). , 2008, American heart journal.
[14] Chun Yuan,et al. Effect of rosuvastatin therapy on carotid plaque morphology and composition in moderately hypercholesterolemic patients: a high-resolution magnetic resonance imaging trial. , 2008, American heart journal.
[15] J. Gillard,et al. Correlation of carotid atheromatous plaque inflammation with biomechanical stress: utility of USPIO enhanced MR imaging and finite element analysis. , 2008, Atherosclerosis.
[16] Dorothee Auer,et al. Detection of intraplaque hemorrhage by magnetic resonance imaging in symptomatic patients with mild to moderate carotid stenosis predicts recurrent neurological events. , 2008, Journal of vascular surgery.
[17] G. Moneta,et al. Inflammation in Carotid Atherosclerotic Plaque: A Dynamic Contrastenhanced MR Imaging StudyKerwin WS, O'Brien KD, Ferguson MS, et al (Univ of Washington, Seattle; Mountain-Whisper-Light Statistical Consulting, Seattle; VA Puget Sound Health Care System, Seattle) Radiology 241:459–468, 2006§ , 2008 .
[18] S. Allender,et al. European cardiovascular disease statistics , 2008 .
[19] S. Wickline,et al. Molecular imaging by cardiovascular MR. , 2007, Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance.
[20] Zhi-Yong Li,et al. Simulation of the Interaction between Blood Flow and Atherosclerotic Plaque , 2007, 2007 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[21] Chun Yuan,et al. Predictors of carotid atherosclerotic plaque progression as measured by noninvasive magnetic resonance imaging. , 2007, Atherosclerosis.
[22] C. Yuan,et al. Testing the hypothesis of atherosclerotic plaque lipid depletion during lipid therapy by magnetic resonance imaging: study design of Carotid Plaque Composition Study. , 2007, American heart journal.
[23] C. Yuan,et al. Plaque Rupture in the Carotid Artery Is Localized at the High Shear Stress Region: A Case Report , 2007, Stroke.
[24] Martin J Graves,et al. Comparison of the inflammatory burden of truly asymptomatic carotid atheroma with atherosclerotic plaques contralateral to symptomatic carotid stenosis: an ultra small superparamagnetic iron oxide enhanced magnetic resonance study , 2007, Journal of Neurology, Neurosurgery, and Psychiatry.
[25] S. Money,et al. Commentary on: Redgrave JNE, Lovett JK, Gallagher PJ, et al. Histological assessment of 526 symptomatic carotid plaques in relation to the nature and timing of ischemic symptoms: the Oxford Plaque Study. Circulation. 2006; 113:2320-2328. , 2007, Perspectives in vascular surgery and endovascular therapy.
[26] Dorothee P Auer,et al. Carotid Intraplaque Hemorrhage Predicts Recurrent Symptoms in Patients With High-Grade Carotid Stenosis , 2007, Stroke.
[27] Correlation of macrophage location and plaque stress distribution using USPIO-enhanced MRI in a patient with symptomatic severe carotid stenosis: a new insight into risk stratification , 2007, British journal of neurosurgery.
[28] Debiao Li,et al. Diffusion-prepared segmented steady-state free precession: Application to 3D black-blood cardiovascular magnetic resonance of the thoracic aorta and carotid artery walls. , 2007, Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance.
[29] B. Astor,et al. Comparison of gadolinium-enhanced cardiovascular magnetic resonance angiography with high-resolution black blood cardiovascular magnetic resonance for assessing carotid artery stenosis. , 2007, Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance.
[30] Renu Virmani,et al. Histopathology of Carotid Atherosclerotic Disease , 2006, Neurosurgery.
[31] Chun Yuan,et al. Inflammation in carotid atherosclerotic plaque: a dynamic contrast-enhanced MR imaging study. , 2006, Radiology.
[32] C. Yuan,et al. Abstract 3843: The Composition and Morphology of the Carotid Artery are Associated with Coronary Artery Disease: A Case-Control High Resolution Magnetic Resonance Imaging Study , 2006 .
[33] Fei Liu,et al. MRI of atherosclerosis in clinical trials , 2006, NMR in biomedicine.
[34] Martin J Graves,et al. Assessment of Inflammatory Burden Contralateral to the Symptomatic Carotid Stenosis Using High-Resolution Ultrasmall, Superparamagnetic Iron Oxide–Enhanced MRI , 2006, Stroke.
[35] C. Yuan,et al. Comparison of symptomatic and asymptomatic atherosclerotic carotid plaque features with in vivo MR imaging. , 2006, Radiology.
[36] Chun Yuan,et al. Automated measurement of mean wall thickness in the common carotid artery by MRI: A comparison to intima‐media thickness by B‐mode ultrasound , 2006, Journal of magnetic resonance imaging : JMRI.
[37] R. Cury,et al. Intra‐ and interreader reproducibility of magnetic resonance imaging for quantifying the lipid‐rich necrotic core is improved with gadolinium contrast enhancement , 2006, Journal of magnetic resonance imaging : JMRI.
[38] J. Gillard,et al. Identifying Inflamed Carotid Plaques Using In Vivo USPIO-Enhanced MR Imaging to Label Plaque Macrophages , 2006, Arteriosclerosis, thrombosis, and vascular biology.
[39] P J Gallagher,et al. Histological Assessment of 526 Symptomatic Carotid Plaques in Relation to the Nature and Timing of Ischemic Symptoms: The Oxford Plaque Study , 2006, Circulation.
[40] M. McConnell,et al. Multicontrast black‐blood MRI of carotid arteries: Comparison between 1.5 and 3 tesla magnetic field strengths , 2006, Journal of magnetic resonance imaging : JMRI.
[41] R. Virmani,et al. Pathology of the Vulnerable Plaque , 2006 .
[42] Chun Yuan,et al. Association Between Carotid Plaque Characteristics and Subsequent Ischemic Cerebrovascular Events: A Prospective Assessment With MRI—Initial Results , 2006, Stroke.
[43] Martin J Graves,et al. Stress analysis of carotid plaque rupture based on in vivo high resolution MRI. , 2006, Journal of biomechanics.
[44] Z. Fayad,et al. Carotid black blood MRI burden of atherosclerotic disease assessment correlates with ultrasound intima-media thickness. , 2006, Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance.
[45] Chun Yuan,et al. In Vivo Quantitative Measurement of Intact Fibrous Cap and Lipid-Rich Necrotic Core Size in Atherosclerotic Carotid Plaque: Comparison of High-Resolution, Contrast-Enhanced Magnetic Resonance Imaging and Histology , 2005, Circulation.
[46] Bruce A. Wasserman,et al. Low-Grade Carotid Stenosis: Looking Beyond the Lumen With MRI , 2005, Stroke.
[47] W. Kerwin,et al. Feasibility of in vivo, multicontrast‐weighted MR imaging of carotid atherosclerosis for multicenter studies , 2005, Journal of magnetic resonance imaging : JMRI.
[48] Chun Yuan,et al. Presence of Intraplaque Hemorrhage Stimulates Progression of Carotid Atherosclerotic Plaques: A High-Resolution Magnetic Resonance Imaging Study , 2005, Circulation.
[49] G. Hansson. Inflammation, atherosclerosis, and coronary artery disease. , 2005, The New England journal of medicine.
[50] W S Kerwin,et al. Carotid Plaque Composition Differs Between Ethno-Racial Groups: An MRI Pilot Study Comparing Mainland Chinese and American Caucasian Patients , 2005, Arteriosclerosis, thrombosis, and vascular biology.
[51] Alfons G H Kessels,et al. Assessment of human atherosclerotic carotid plaque components with multisequence MR imaging: initial experience. , 2005, Radiology.
[52] C. Yuan,et al. Quantitative Evaluation of Carotid Plaque Composition by In Vivo MRI , 2004, Arteriosclerosis, thrombosis, and vascular biology.
[53] Dalin Tang,et al. 3D MRI-Based Multicomponent FSI Models for Atherosclerotic Plaques , 2004, Annals of Biomedical Engineering.
[54] J. Gillard,et al. Multi-sequence in vivo MRI can quantify fibrous cap and lipid core components in human carotid atherosclerotic plaques. , 2004, European journal of vascular and endovascular surgery : the official journal of the European Society for Vascular Surgery.
[55] Alfons G H Kessels,et al. In vivo detection of hemorrhage in human atherosclerotic plaques with magnetic resonance imaging , 2004, Journal of magnetic resonance imaging : JMRI.
[56] Martin J Graves,et al. In Vivo Detection of Macrophages in Human Carotid Atheroma: Temporal Dependence of Ultrasmall Superparamagnetic Particles of Iron Oxide–Enhanced MRI , 2004, Stroke.
[57] Chun Yuan,et al. Hemorrhage in the Atherosclerotic Carotid Plaque: A High-Resolution MRI Study , 2004, Stroke.
[58] F. Epstein,et al. Magnetic Resonance Imaging Identifies the Fibrous Cap in Atherosclerotic Abdominal Aortic Aneurysm , 2004, Circulation.
[59] Peter D. Richardson,et al. Biomechanics of Plaque Rupture: Progress, Problems, and New Frontiers , 2002, Annals of Biomedical Engineering.
[60] Renu Virmani,et al. Intraplaque hemorrhage and progression of coronary atheroma. , 2003, The New England journal of medicine.
[61] Brian K Rutt,et al. Quantitative assessment of carotid plaque composition using multicontrast MRI and registered histology , 2003, Magnetic resonance in medicine.
[62] E. Boerwinkle,et al. From vulnerable plaque to vulnerable patient: a call for new definitions and risk assessment strategies: Part I. , 2003, Circulation.
[63] Antonio Colombo,et al. From vulnerable plaque to vulnerable patient: a call for new definitions and risk assessment strategies: Part II. , 2003, Circulation.
[64] Chun Yuan,et al. Accuracy and uniqueness of three in vivo measurements of atherosclerotic carotid plaque morphology with black blood MRI , 2003, Magnetic resonance in medicine.
[65] Anne L. Martel,et al. Prevalence of Complicated Carotid Atheroma as Detected by Magnetic Resonance Direct Thrombus Imaging in Patients With Suspected Carotid Artery Stenosis and Previous Acute Cerebral Ischemia , 2003, Circulation.
[66] Anne L. Martel,et al. Characterization of Complicated Carotid Plaque With Magnetic Resonance Direct Thrombus Imaging in Patients With Cerebral Ischemia , 2003, Circulation.
[67] M. E. Kooi,et al. Accumulation of Ultrasmall Superparamagnetic Particles of Iron Oxide in Human Atherosclerotic Plaques Can Be Detected by In Vivo Magnetic Resonance Imaging , 2003, Circulation.
[68] David Zurakowski,et al. Inhibition of plaque neovascularization reduces macrophage accumulation and progression of advanced atherosclerosis , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[69] Chun Yuan,et al. In vivo accuracy of multisequence MR imaging for identifying unstable fibrous caps in advanced human carotid plaques , 2003, Journal of magnetic resonance imaging : JMRI.
[70] Chun Yuan,et al. Quantitative Magnetic Resonance Imaging Analysis of Neovasculature Volume in Carotid Atherosclerotic Plaque , 2003, Circulation.
[71] J. Gillard. Imaging of carotid artery disease: from luminology to function? , 2003 .
[72] V. Fuster,et al. Lipid Lowering by Simvastatin Induces Regression of Human Atherosclerotic Lesions: Two Years’ Follow-Up by High-Resolution Noninvasive Magnetic Resonance Imaging , 2002, Circulation.
[73] Chun Yuan,et al. Classification of Human Carotid Atherosclerotic Lesions With In Vivo Multicontrast Magnetic Resonance Imaging , 2002, Circulation.
[74] R. Balaban,et al. Carotid artery atherosclerosis: in vivo morphologic characterization with gadolinium-enhanced double-oblique MR imaging initial results. , 2002, Radiology.
[75] Chun Yuan,et al. Identification of Fibrous Cap Rupture With Magnetic Resonance Imaging Is Highly Associated With Recent Transient Ischemic Attack or Stroke , 2002, Circulation.
[76] W. Kerwin,et al. Contrast‐enhanced high resolution MRI for atherosclerotic carotid artery tissue characterization , 2002, Journal of magnetic resonance imaging : JMRI.
[77] W S Kerwin,et al. In Vivo Accuracy of Multispectral Magnetic Resonance Imaging for Identifying Lipid-Rich Necrotic Cores and Intraplaque Hemorrhage in Advanced Human Carotid Plaques , 2001, Circulation.
[78] J. Rouleau,et al. Vasopeptidase Inhibitors: A New Therapeutic Concept in Cardiovascular Disease? , 2001, Circulation.
[79] K R Maravilla,et al. Effects of Prolonged Intensive Lipid-Lowering Therapy on the Characteristics of Carotid Atherosclerotic Plaques In Vivo by MRI: A Case-Control Study , 2001, Arteriosclerosis, thrombosis, and vascular biology.
[80] V. Fuster,et al. Effects of Lipid-Lowering by Simvastatin on Human Atherosclerotic Lesions: A Longitudinal Study by High-Resolution, Noninvasive Magnetic Resonance Imaging , 2001, Circulation.
[81] R. Mofidi,et al. Association between plaque instability, angiogenesis and symptomatic carotid occlusive disease , 2001, The British journal of surgery.
[82] Renu Virmani,et al. Pathophysiology of Calcium Deposition in Coronary Arteries , 2001, Herz.
[83] A Tabib,et al. Atherosclerotic plaques: classification and characterization with T2-weighted high-spatial-resolution MR imaging-- an in vitro study. , 2001, Radiology.
[84] P. Shah,et al. Pravastatin Treatment Increases Collagen Content and Decreases Lipid Content, Inflammation, Metalloproteinases, and Cell Death in Human Carotid Plaques: Implications for Plaque Stabilization , 2001, Circulation.
[85] C. Yuan,et al. Visualization of Fibrous Cap Thickness and Rupture in Human Atherosclerotic Carotid Plaque In Vivo With High-Resolution Magnetic Resonance Imaging , 2000, Circulation.
[86] R. Virmani,et al. Lessons from sudden coronary death: a comprehensive morphological classification scheme for atherosclerotic lesions. , 2000, Arteriosclerosis, thrombosis, and vascular biology.
[87] A H Davies,et al. The symptomatic carotid plaque. , 2000, Stroke.
[88] A. Naylor,et al. Angiogenesis and the atherosclerotic carotid plaque: association between symptomatology and plaque morphology , 1999, Journal of vascular surgery.
[89] A. Becker,et al. Leucocyte recruitment in rupture prone regions of lipid-rich plaques: a prominent role for neovascularization? , 1999, Cardiovascular research.
[90] R. Kronmal,et al. Carotid-artery intima and media thickness as a risk factor for myocardial infarction and stroke in older adults. Cardiovascular Health Study Collaborative Research Group. , 1999, The New England journal of medicine.
[91] R. Ross,et al. Atherosclerosis is an inflammatory disease. , 1998, American heart journal.
[92] S. Glagov,et al. Juxtalumenal location of plaque necrosis and neoformation in symptomatic carotid stenosis. , 1997, Journal of vascular surgery.
[93] Arno W. Hoes,et al. Common carotid intima-media thickness and risk of stroke and myocardial infarction: the Rotterdam Study. , 1997, Circulation.
[94] P L Allan,et al. Relationship between carotid intima-media thickness and symptomatic and asymptomatic peripheral arterial disease. The Edinburgh Artery Study. , 1997, Stroke.
[95] V. Fuster,et al. Magnetic resonance images lipid, fibrous, calcified, hemorrhagic, and thrombotic components of human atherosclerosis in vivo. , 1996, Circulation.
[96] R. Virmani,et al. Atherosclerotic plaque rupture in symptomatic carotid artery stenosis. , 1996, Journal of vascular surgery.
[97] C. Alpers,et al. Neovascular expression of E-selectin, intercellular adhesion molecule-1, and vascular cell adhesion molecule-1 in human atherosclerosis and their relation to intimal leukocyte content. , 1996, Circulation.
[98] W D Wagner,et al. A definition of advanced types of atherosclerotic lesions and a histological classification of atherosclerosis. A report from the Committee on Vascular Lesions of the Council on Arteriosclerosis, American Heart Association. , 1995, Arteriosclerosis, thrombosis, and vascular biology.
[99] M. Ferguson,et al. Vascular cell adhesion molecule-1 is expressed in human coronary atherosclerotic plaques. Implications for the mode of progression of advanced coronary atherosclerosis. , 1993, The Journal of clinical investigation.
[100] E. Falk. Why do plaques rupture? , 1992, Circulation.
[101] J. Toole,et al. Evaluation of the associations between carotid artery atherosclerosis and coronary artery stenosis. A case-control study. , 1990, Circulation.