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动脉粥样硬化性心血管疾病

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Machine Learning Using CT-FFR Predicts Proximal Atherosclerotic Plaque Formation Associated With LAD Myocardial Bridging Active factor XI is associated with the risk of cardiovascular events in stable coronary artery disease patients Parallel Murine and Human Plaque Proteomics Reveals Pathways of Plaque Rupture Apolipoprotein A-V is a potential target for treating coronary artery disease: evidence from genetic and metabolomic analyses Potential Mechanisms of In-stent Neointimal Atherosclerotic Plaque Formation Independent Association of Lipoprotein(a) and Coronary Artery Calcification With Atherosclerotic Cardiovascular Risk Comprehensive Management of Cardiovascular Risk Factors for Adults With Type 2 Diabetes: A Scientific Statement From the American Heart Association Autologous CD34+ Stem Cell Therapy Increases Coronary Flow Reserve and Reduces Angina in Patients With Coronary Microvascular Dysfunction Cardiovascular risk prediction in type 2 diabetes: a comparison of 22 risk scores in primary care settings Plaque Rupture, compared to Plaque Erosion, is associated with Higher Level of Pan-coronary Inflammation

Letter2019 Mar 8. [Epub ahead of print]

JOURNAL:JACC: Cardiovascular Imaging Article Link

Machine Learning Using CT-FFR Predicts Proximal Atherosclerotic Plaque Formation Associated With LAD Myocardial Bridging

Zhou F, Tang CX, Schoepf UJ et al. Keywords: proximal atherosclerotic plaque formation; LAD myocardial bridging

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