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Angiology
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Circumferential Quantitative Analysis of Planar 201T1 Myocardial Scintigraphy in the Diagnosis of Coronary Artery Disease

Guo-Long Hung

Division of Nuclear Medicine, Department of Radiology, University of Southern California

Michael E. Siegel

Division of Nuclear Medicine, Department of Radiology, University of Southern California

Charles McKay

Division of Cardiology, University of Southern California, School of Medicine, LAC/USC Medical Center, Los Angeles, California

David C.P. Chen

Division of Nuclear Medicine, Department of Radiology, University of Southern California

A.N. Ansari

Division of Nuclear Medicine, Department of Radiology, University of Southern California

Nelson B. Arnstein

Division of Nuclear Medicine, Department of Radiology, University of Southern California

Kai H. Lee

Division of Nuclear Medicine, Department of Radiology, University of Southern California

Charles A. Stewart

Division of Nuclear Medicine, Department of Radiology, University of Southern California

S.H. Rahimtoola

Division of Cardiology, University of Southern California, School of Medicine, LAC/USC Medical Center, Los Angeles, California

Methodology for the computer analysis of 201T1 myocardial perfusion images has been developed by several laboratories. Substantial evidence of the advantage of this approach over visual inspection alone has been reported. The currently available computer analyses use different algorithms to analyze 201T1 kinetics in the myocardium. The authors evaluated and compared two widely used software programs, Medical Data System (MDS): a mean-count profile, and the Cedars Sinai (CS): a maximal-count profile, of planar 201T1 scintigraphy for their ability to detect coronary artery disease (CAD).

Angiology, Vol. 41, No. 11, 901-907 (1990)
DOI: 10.1177/000331979004101102


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