Relation between cyclic variation in echo amplitude and segmental contraction in normal and abnormal hearts.
暂无分享,去创建一个
D G Gibson | M. Yacoub | D. Gibson | S. Kushwaha | R. Logan-Sinclair | D A Lythall | M H Yacoub | R B Logan-Sinclair | D. Lythall | C J Ilsley | S S Kushwaha | C. Ilsley | Magdi H. Yacoub | Ron B Logan-Sinclair | Charles Ilsley | Sudhir S Kushwaha | D. G. Gibson | D. Gibson | Sudhir S. Kushwaha
[1] L. Wann,et al. Influence of heart rate, preload, afterload, and inotropic state on myocardial ultrasonic backscatter. , 1988, Circulation.
[2] J. G. Miller,et al. Effects of myocardial contraction on ultrasonic backscatter before and after ischemia. , 1984, The American journal of physiology.
[3] R L Popp,et al. Influence of the orientation of myocardial fibers on echocardiographic images. , 1987, The American journal of cardiology.
[4] K. Weber,et al. Cardiac interstitium in health and disease: the fibrillar collagen network. , 1989, Journal of the American College of Cardiology.
[5] J. G. Miller,et al. Cardiac cycle-dependent variation of integrated backscatter is not distorted by abnormal myocardial wall motion in human subjects with paradoxical septal motion. , 1989, Ultrasound in medicine & biology.
[6] S. M. Collins,et al. Variation of left ventricular myocardial gray level on two-dimensional echocardiograms as a result of cardiac contraction. , 1984, Circulation.
[7] J. G. Miller,et al. A relationship between ultrasonic integrated backscatter and myocardial contractile function. , 1985, The Journal of clinical investigation.
[8] J. G. Miller,et al. Applicability of ultrasonic tissue characterization for longitudinal assessment and differentiation of calcification and fibrosis in cardiomyopathy. , 1984, Journal of the American College of Cardiology.
[9] D. Gibson,et al. Relation between regional echo intensity and myocardial connective tissue in chronic left ventricular disease. , 1984, British heart journal.
[10] J. G. Miller,et al. Ultrasonic tissue characterization with integrated backscatter. Acute myocardial ischemia, reperfusion, and stunned myocardium in patients. , 1989, Circulation.
[11] R. Foale,et al. Echocardiographic features of eosinophilic endomyocardial disease. , 1982, British heart journal.
[12] J C Bamber,et al. Adaptive filtering for reduction of speckle in ultrasonic pulse-echo images. , 1986, Ultrasonics.
[13] J. Bamber,et al. Quantitative effects of speckle reduction on cross sectional echocardiographic images. , 1989, British heart journal.
[14] J. G. Miller,et al. The dependence of myocardial ultrasonic integrated backscatter on contractile performance. , 1985, Circulation.
[15] J. G. Miller,et al. Changes in myocardial backscatter throughout the cardiac cycle. , 1983, Ultrasonic imaging.
[16] M. Davies,et al. Collagen in human myocardium as a function of age. , 1972, Cardiovascular research.
[17] J. G. Miller,et al. Sensitive detection of the effects of reperfusion on myocardium by ultrasonic tissue characterization with integrated backscatter. , 1986, Circulation.
[18] F J Schoen,et al. Enhanced Detection of the Evolution of Tissue Changes After Acute Myocardial Infarction Using Color‐encoded Two‐dimensional Echocardiography , 1982, Circulation.
[19] I Schnittger,et al. Ultrasonic tissue characterization with a real time integrated backscatter imaging system in normal and aging human hearts. , 1989, Journal of the American College of Cardiology.
[20] E. Sonnenblick,et al. Profound structural alterations of the extracellular collagen matrix in postischemic dysfunctional ("stunned") but viable myocardium. , 1987, Journal of the American College of Cardiology.
[21] J. G. Miller,et al. Changes in ultrasonic attenuation indicative of early myocardial ischemic injury. , 1979, The American journal of physiology.
[22] J. Ross,et al. Fiber Orientation in the Canine Left Ventricle during Diastole and Systole , 1969, Circulation research.
[23] R. Popp,et al. Ultrasonic tissue characterization of human hypertrophied hearts in vivo with cardiac cycle-dependent variation in integrated backscatter. , 1989, Circulation.
[24] J. G. Miller,et al. Quantitative ultrasonic tissue characterization with real-time integrated backscatter imaging in normal human subjects and in patients with dilated cardiomyopathy. , 1987, Circulation.
[25] A E Becker,et al. Left ventricular fibre architecture in man. , 1981, British heart journal.
[26] D. Gibson,et al. Clinical application of amplitude processing of echocardiographic images. , 1981, British heart journal.
[27] J. G. Miller,et al. Effects of Coronary Artery Occlusion and Reperfusion on Cardiac Cycle‐Dependent Variation of Myocardial Ultrasonic Backscatter , 1985, Circulation research.
[28] D. Gibson,et al. Relation of regional echo amplitude to left ventricular function and the electrocardiogram in left ventricular hypertrophy. , 1984, British heart journal.
[29] H. Feigenbaum,et al. Systolic Thickening and Thinning of the Septum and Posterior Wall in Patients with Coronary Artery Disease, Congestive Cardiomyopathy, and Atrial Septal Defect , 1977, Circulation.
[30] J. G. Miller,et al. Ultrasonic characterization of myocardium. , 1985, Progress in cardiovascular diseases.