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lüll Physics of cardiac imaging with multiple-row detector CT Mahesh M; Cody DDRadiographics 2007[Sep]; 27 (5): 1495-509Cardiac imaging with multiple-row detector computed tomography (CT) has become possible due to rapid advances in CT technologies. Images with high temporal and spatial resolution can be obtained with multiple-row detector CT scanners; however, the radiation dose associated with cardiac imaging is high. Understanding the physics of cardiac imaging with multiple-row detector CT scanners allows optimization of cardiac CT protocols in terms of image quality and radiation dose. Knowledge of the trade-offs between various scan parameters that affect image quality--such as temporal resolution, spatial resolution, and pitch--is the key to optimized cardiac CT protocols, which can minimize the radiation risks associated with these studies. Factors affecting temporal resolution include gantry rotation time, acquisition mode, and reconstruction method; factors affecting spatial resolution include detector size and reconstruction interval. Cardiac CT has the potential to become a reliable tool for noninvasive diagnosis and prevention of cardiac and coronary artery disease.|Biophysics/methods[MESH]|Coronary Angiography/*instrumentation/*methods[MESH]|Coronary Artery Disease/*diagnostic imaging[MESH]|Equipment Design[MESH]|Humans[MESH]|Radiographic Image Interpretation, Computer-Assisted/*instrumentation/*methods[MESH]|Tomography, X-Ray Computed/*instrumentation/*methods[MESH] |