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Artificial Intelligence in Cardiovascular Imaging for Risk Stratification in Coronary Artery Disease
Andrew Lin1, Márton Kolossváry1, Manish Motwani1
1Biomedical Imaging Research Institute (A.L., D.D.) and Artificial Intelligence in Medicine Program (P.J.S.), Cedars-Sinai Medical Center, 116 N Robertson Blvd, Los Angeles, CA 90048; MTA-SE Cardiovascular Imaging Research Group, Heart and Vascular Center (M.K., P.M.H.), and Medical Imaging Centre (P.M.H.), Semmelweis University, Budapest, Hungary; Manchester Heart Centre, Manchester University Hospitals NHS Foundation Trust, Manchester, England (M.M.); and Department of Biomedical Engineering and Physics, Department of Radiology and Nuclear Medicine, and Amsterdam Cardiovascular Sciences, Amsterdam University Medical Centers, Amsterdam, the Netherlands (I.I.).
Abstract:
Artificial intelligence (AI) describes the use of computational techniques to perform tasks that normally require human cognition. Machine learning and deep learning are subfields of AI that are increasingly being applied to cardiovascular imaging for risk stratification. Deep learning algorithms can accurately quantify prognostic biomarkers from image data. Additionally, conventional or AI-based imaging parameters can be combined with clinical data using machine learning models for individualized risk prediction. The aim of this review is to provide a comprehensive review of state-of-the-art AI applications across various noninvasive imaging modalities (coronary artery calcium scoring CT, coronary CT angiography, and nuclear myocardial perfusion imaging) for the quantification of cardiovascular risk in coronary artery disease. © RSNA, 2021.
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