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Myocardial perfusion imaging / Technetium-99m / Perfusion scanning / Nuclear medicine / Gamma camera / Positron emission tomography / Technetium (99mTc) tetrofosmin / Technetium (99mTc) sestamibi / Medical imaging / Medicine / Medical physics / Single-photon emission computed tomography


ASNC INFORMATION STATEMENT Recommendations for reducing radiation exposure in myocardial perfusion imaging Manuel D. Cerqueira, MD,a Kevin C. Allman, MBBS,b Edward P. Ficaro, PhD,c Christopher L. Hansen, MD,d Kenneth J.
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Document Date: 2011-06-04 10:48:38


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thallium imaging / functional imaging / low-energy high resolution parallel-hole collimators / energy resolution / imaging / high-speed myocardial perfusion imaging / energy / metabolism clinical imaging / energy window / detector systems / cardiac imaging / cardiac imaging procedures / software options / intrinsic energy resolution / image processing / reconstruction software / myocardial perfusion imaging / cardiac diagnostic imaging / conventional dual detector anger camera imaging / perfusion imaging / myocardial perfusion upright imaging / chemicals / reconstruction algorithms / tomography myocardial perfusion imaging / camera technology / step-andshoot protocols / stress imaging / normal prior stress imaging study / stress imaging study / abnormal prior stress imaging study / multi-detector systems / stress/rest myocardial perfusion imaging / cardiac radionuclide imaging / camera technologies / software / computerized tomographic imaging / myocardial perfusion imaging protocols / cardiac imaging camera / depth-dependent resolution recovery algorithms / Dual-isotope protocol / thallium protocols / Continuous acquisition protocols / /

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Marko Yakovlevitch / William A. Van Decker / Kenneth J. Nichols / Christopher L. Hansen / Randall C. Thompson / Van Gramberg / Germano G. Advances / Manuel D. Cerqueira / P. Ficaro / /

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