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Anomalous Coronary Arteries That Need Intervention: Review of Pre- and Postoperative Imaging Appearances
Prachi P Agarwal1, Carole Dennie1, Elena Pena1
1From the Department of Radiology (P.P.A., S.P.), Department of Internal Medicine, Division of Cardiology (T.L.), and Department of Cardiac Surgery (B.Y.), University of Michigan Health System, 1500 E Medical Center Dr, Ann Arbor, MI 48109; Department of Radiology, University of Ottawa, Ottawa, Ont, Canada (C.D., E.P.); and Department of Radiology, University of Toronto, Toronto, Ont, Canada (E.N.).
Insights
This review covers major coronary artery anomalies requiring treatment, such as anomalous origin and coronary artery fistula. It highlights advanced imaging techniques like CT angiography and MR imaging for diagnosis and management strategies.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
- Congenital Heart Disease
Background:
- Coronary artery anomalies are diverse, ranging from variants to hemodynamically significant conditions.
- Major anomalies like anomalous origin from the opposite sinus, origin from the pulmonary artery, and coronary artery fistula require timely intervention.
- Accurate imaging is crucial for defining anatomy and guiding treatment decisions.
Purpose of the Study:
- To review clinically relevant coronary artery anomalies.
- To discuss the roles and advancements of computed tomography (CT) and magnetic resonance (MR) imaging in diagnosing these anomalies.
- To outline management strategies and post-treatment complications.
Main Methods:
- Review of current literature on coronary artery anomalies.
- Focus on imaging modalities including coronary computed tomographic angiography (CCTA) and MR imaging.
- Discussion of surgical and interventional treatment options.
Main Results:
- CCTA offers detailed coronary anatomy and spatial relationships, with 3D reconstruction capabilities.
- MR imaging is a valuable non-ionizing radiation alternative, especially for pediatric patients.
- The review details the imaging appearance, hemodynamic considerations, and decision-making for various coronary anomalies.
Conclusions:
- Comprehensive imaging evaluation is essential for managing coronary artery anomalies.
- CT and MR imaging play vital roles in diagnosis and treatment planning.
- Various surgical and interventional approaches exist for managing these complex conditions.
Abstract:
Coronary artery anomalies constitute a diverse group of abnormalities, ranging from anatomic variants to those having hemodynamic consequences. This review focuses on major anomalies that have clinical implications requiring treatment, including anomalous origin of the coronary artery from the opposite sinus with interarterial course specifically with an intramural course, coronary artery origin from the pulmonary artery, and coronary artery fistula. Comprehensive imaging evaluation is necessary to precisely delineate the anatomy as well as pathophysiologic aspects of the anomaly before determining treatment options for a specific patient. Coronary computed tomographic angiography provides elegant depiction of coronary arterial anatomy and the relationship of the vessel to the adjacent structures, with the ability to perform three-dimensional reconstructions. Magnetic resonance (MR) imaging is emerging as an alternative noninvasive imaging strategy, particularly in young individuals, due to the lack of ionizing radiation and avoidance of iodinated contrast agents. This review describes the roles and recent technical advancements in computed tomography and MR imaging pertinent to coronary artery imaging. Additionally, this article will familiarize readers with the cross-sectional imaging appearance of clinically relevant coronary anomalies, hemodynamic considerations, and complex decision making. The different management strategies used for these anomalies, such as coronary unroofing, reimplantation, bypass grafting, Takeuchi repair, and surgical and interventional closure of fistulas, as well as specific posttreatment complications, are also discussed. ©RSNA, 2017.
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