Choi Andrew D, Thomas Dustin M, Lee James, Abbara Suhny, Cury Ricardo C, Leipsic Jonathon A, Maroules Christopher, Nagpal Prashant, Steigner Michael L, Wang Dee Dee, Williams Michelle C, Zeb Irfan, Villines Todd C, Blankstein Ron
Division of Cardiology & Department of Radiology, The George Washington University School of Medicine, 2150 Pennsylvania Ave NW, Suite 4-417, Washington, DC 20037 (A.D.C.); Heart Institute, Parkview Health, Fort Wayne, Ind (D.M.T.); Department of Medicine, Division of Cardiology, Henry Ford Health System, Center for Structural Heart Disease, Detroit, Mich (J.L., D.D.W.); Division of Cardiothoracic Imaging, Department of Radiology, University of Texas Southwestern Medical Center, Dallas, Tex (S.A.); Miami Cardiac and Vascular Institute, Baptist Health of South Florida, Miami, FL, United States and Department of Radiology, Herbert Wertheim College of Medicine, Florida International University, Miami, FL (R.C.C.); Department of Radiology, St. Paul's Hospital, Vancouver, Canada (J.A.L.); Department of Radiology, Naval Medical Center, Portsmouth, Va (C.M.); Department of Radiology, University of Iowa Hospitals and Clinics, Iowa City, Iowa (P.N.); Cardiovascular Imaging Program, Department of Radiology, Brigham and Women's Hospital, Boston, MA, United States (M.L.S.); University of Edinburgh/British Heart Foundation Centre for Cardiovascular Science, Edinburgh, United Kingdom (M.C.W.); Division of Cardiology, West Virginia University School of Medicine, Morgantown, WV (I.Z.); and Division of Cardiology, University of Virginia Health System, Charlottesville, Va (T.C.V.); Cardiovascular Imaging Program, Departments of Medicine (Cardiovascular Division) and Radiology, Brigham and Women's Hospital, Boston, MA, United States (R.B.).
Radiol Cardiothorac Imaging. 2020 Oct 15;3(1):e200480. doi: 10.1148/ryct.2020200480. eCollection 2021 Feb.
Cardiovascular computed tomography (CCT) is a well-validated noninvasive imaging tool with an ever-expanding array of applications beyond the assessment of coronary artery disease. These include the evaluation of structural heart diseases, congenital heart diseases, peri-procedural electrophysiology applications, and the functional evaluation of ischemia. This breadth requires a robust and diverse training curriculum to ensure graduates of CCT training programs meet minimum competency standards for independent CCT interpretation. This statement from the Society of Cardiovascular Computed Tomography aims to supplement existing societal training guidelines by providing a curriculum and competency framework to inform the development of a comprehensive, integrated training experience for cardiology and radiology trainees in CCT. This article is being published synchronously in , , and © 2020 Society of Cardiovascular Computed Tomography. Published by RSNA with permission.
心血管计算机断层扫描(CCT)是一种经过充分验证的非侵入性成像工具,其应用范围不断扩大,已超出冠状动脉疾病评估领域。这些应用包括结构性心脏病、先天性心脏病的评估,围手术期电生理应用以及缺血的功能评估。如此广泛的应用领域需要强大且多样化的培训课程,以确保CCT培训项目的毕业生达到独立解读CCT的最低能力标准。心血管计算机断层扫描协会的这份声明旨在通过提供课程和能力框架,补充现有的社会培训指南,为心脏病学和放射学学员在CCT方面开展全面、综合的培训提供参考。本文同时发表于《 》、《 》和《 》© 2020心血管计算机断层扫描协会。经RSNA许可出版。