Prediction of Left Main or 3-Vessel Disease Using Myocardial Perfusion Reserve on Dynamic Thallium-201 Single-Photon Emission Computed Tomography With a Semiconductor Gamma Camera

Author:

Shiraishi Shinya1,Sakamoto Fumi1,Tsuda Noriko1,Yoshida Morikatsu1,Tomiguchi Seiji2,Utsunomiya Daisuke1,Ogawa Hisao3,Yamashita Yasuyuki1

Affiliation:

1. Department of Diagnostic Radiology, Graduate School of Life Sciences, Kumamoto University

2. Department of Diagnostic Medical Imaging, School of Health Faculty of Life Sciences, Kumamoto University

3. Department of Cardiovascular Medicine, Graduate School of Life Sciences, Kumamoto University

Publisher

Japanese Circulation Society

Subject

Cardiology and Cardiovascular Medicine,General Medicine

Reference29 articles.

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2. 2. Shaw LJ, Hage FG, Berman DS, Hachamovitch R, Iskandrian A. Prognosis in the era of comparative effectiveness research: Where is nuclear cardiology now and where should it be? J Nucl Cardiol 2012; 19: 1026–1043.

3. 3. Garcia EV, Faber TL, Esteves FP. Cardiac dedicated ultrafast SPECT cameras: New designs and clinical implications. J Nucl Med 2011; 52: 210–217.

4. 4. Tanaka H, Chikamori T, Tanaka N, Hida S, Igarashi Y, Yamashita J, et al. Diagnostic performance of a novel cadmium-zinc-telluride gamma camera system assessed using fractional flow reserve. Circ J 2014; 78: 2727–2734.

5. 5. Germano G, Erel J, Lewin H, Kavanagh PB, Berman DS. Automatic quantitation of regional myocardial wall motion and thickening from gated technetium-99m sestamibi myocardial perfusion single-photon emission computed tomography. J Am Coll Cardiol 1997; 30: 1360–1367.

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