共 39 条
[1]
Boa J. J.(2000)18F-fluorodeoxyflucose imaging with positron emission tomography and single photon emission computed tomography: cardiac applications Semin Nucl Med 30 281-298
[2]
Patton J. A.(1998)Attenuation-corrected J Am Coll Cardiol 32 927-935
[3]
Poldermans D.(2004)Tc-tetrofosmin single-photon emission computed tomography in the detection of viable myocardium: comparison with positron emission tomography using 18F-fulorodeoxyglucose Chin J Ultrasonogr (Chinese) 13 179-182
[4]
Matsunari I.(1995)Evaluation of myocardial viability by quantitative tissue velocity imaging combined with low dose dobutamine echocardiography Circulation 92 2863-2868
[5]
Boning G.(2007)Comparison of myocardial contrast echocardiography and low-dose dobutamine stress echocardiography in predicting recovery of left ventricular function after coronary revascularization in chronic ischemic heart disease Chin J Ultrasonogr (Chinese) 16 19-22
[6]
Ziegler S. I.(1997)Myocardial perfusion assessed by real-time myocardial contrast echocardiography before and after bypass surgery in patients with coronary artery disease Circulation 96 3459-3465
[7]
Bi X. J.(2002)Knowledge of perfusion and contractile reserve improves the predictive value of recovery of regional myocardial function postrevascularization: A study using the combination of myocardial contrast echocardiography and dobutamine echocardiography Chin J Prac Inter Med (Chinese) 22 721-722
[8]
Deng Y. B.(2003)Assessment of viable myocardium after myocardial infarction using intravenous myocardial contrast imaging J Am Coll Cardiol 41 827-833
[9]
Chang Q.(2001)Detection of myocardial viability by contrast echocardiography in acute infarction predicts recovery of resting function and contractile reserve Circulation 103 2021-2027
[10]
deFilippi C. R.(1992)Assessment of myocardial postreperfusion viability by intravenous myocardial contrast echocardiography: analysis of the intensity and texture of opacification Circulation 85 1699-1705