Effects of calcium antagonists on the electrical alternans of the ST segment and on associated mechanical alternans during acute coronary occlusion in dogs.
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K Suzuki | M. Nakashima | H Hashimoto | S Miyake | M Nakashima | H. Hashimoto | K. Suzuki | S. Miyake
[1] E. W. Hancock,et al. Mechanisms of Pulsus Alternans , 1967, Circulation.
[2] E. Braunwald,et al. Studies on Starling's Law of the Heart: VI. Relationships between Left Ventricular End‐Diastolic Volume and Stroke Volume in Man with Observations on the Mechanism of Pulsus Alternans , 1962, Circulation.
[3] B. R. Jewell,et al. A study of the factors responsible for rate‐dependent shortening of the action potential in mammalian ventricular muscle. , 1978, The Journal of physiology.
[4] J. Cinca,et al. The dependence of T wave alternans on diastolic resting period duration. , 1978, European journal of cardiology.
[5] K. Ichihara,et al. Effect of diltiazem, a calcium antagonist, on myocardial pH in ischemic canine heart. , 1982, The Journal of pharmacology and experimental therapeutics.
[6] B. G. Bass. Restitution of the action potential in cat papillary muscle. , 1975, The American journal of physiology.
[7] C. E. Kossmann,et al. Electrical alternans with emphasis on recent observations made by means of single-cell electrical recording. , 1963, American heart journal.
[8] L. Horowitz,et al. Cellular electrophysiology of human myocardial infarction. 1. Abnormalities of cellular activation. , 1979, Circulation.
[9] Edward K. Chung,et al. Principles of cardiac arrhythmias , 1983 .
[10] L. Haywood,et al. Unusual T-wave abnormality. Repolarization alternans associated with hypomagnesemia, acute alcoholism, and cardiomyopathy. , 1969, JAMA.
[11] I. D'cruz,et al. Echocardiography in Mechanical Alternans: With a Note on the Findings in Discordant Alternans within the Left Ventricle , 1976, Circulation.
[12] M. Kleinfeld,et al. Alternans of the ST Segment in Prinzmetal's Angina , 1977, Circulation.
[13] M. A. Matlib,et al. Effects of diltiazem, a calcium antagonist, on regional myocardial function and mitochondria after brief coronary occlusion. , 1980, Journal of molecular and cellular cardiology.
[14] C. Brooks,et al. Production and abolition of alternation in mechanical action of the ventricle. , 1965, American Journal of Physiology.
[15] K. Ishikawa,et al. Alternans of the repolarization wave in a case of hypochloremic alkalosis with hypopotassemia. , 1976, Journal of electrocardiology.
[16] D. Spodick,et al. Pulsus alternans: physiologic study by noninvasive techniques. , 1970, American heart journal.
[17] C. Fisch,et al. Effect of Cycle‐Length Alteration upon the Configuration of the Canine Ventricular Action Potential , 1966, Circulation research.
[18] H. Hellerstein,et al. Electrical alternation in experimental coronary artery occlusion. , 1950, The American journal of physiology.
[19] E. Sonnenblick,et al. THE DYNAMICS OF PULSUS ALTERNANS: ALTERNATING END-DIASTOLIC FIBER LENGTH AS A CAUSATIVE FACTOR. , 1963, The Journal of clinical investigation.
[20] R. Bing,et al. Effect of diltiazem, a calcium antagonist, on myocardial ischemia. , 1979, The American journal of cardiology.
[21] B. Singh,et al. Effects of verapamil on infarct size following experimental coronary occlusion. , 1975, Cardiovascular research.
[22] M. Kleinfeld,et al. Electrical alternans of components of action potential , 1968 .
[23] D Durrer,et al. Mechanism and Time Course of S‐T and T‐Q Segment Changes during Acute Regional Myocardial Ischemia in the Pig Heart Determined by Extracellular and Intracellular Recordings , 1978, Circulation research.
[24] D. Durrer,et al. The Effect of Acute Coronary Artery Occlusion on Subepicardial Transmembrane Potentials in the Intact Porcine Heart , 1977, Circulation.
[25] Kazuzo Kato,et al. Mechanism of Augmented Premature Responses in Canine Ventricular Muscle , 1979, Circulation research.
[26] A. Kleber,et al. Flow of “Injury” Current and Patterns of Excitation during Early Ventricular Arrhythmias in Acute Regional Myocardial Ischemia in Isolated Porcine and Canine Hearts: Evidence for Two Different Arrhythmogenic Mechanisms , 1980, Circulation research.
[27] C. Brooks,et al. Comparative studies of electrical and mechanical alternation in heart cells. , 1968, Journal of electrocardiology.
[28] T. Nagaya,et al. Experimental studies and clinical report on the electrical alternans of ST segment during myocardial ischemia. , 1978, Japanese heart journal.
[29] D. Durrer,et al. The Effect of “Ischemic” Blood on Transmembrane Potentials of Normal Porcine Ventricular Myocardium , 1977, Circulation.
[30] R. Crampton,et al. Alternans of the depressed S-T segment during coronary insufficiency. Its relation to mechanical events. , 1966, The American journal of cardiology.
[31] G. Rona. Experimental aspects of cobalt cardiomyopathy , 1971, British heart journal.
[32] A. Dolara,et al. Electrical alternation of T wave without change in QRS complex. , 1971, British heart journal.
[33] C. Fisch,et al. T wave alternans: an association with abrupt rate change. , 1971, American heart journal.
[34] J. López-Sendón,et al. Pulmonary pulsus alternans in acute myocardial infarction. , 1978, The American journal of cardiology.
[35] Effects of hypoxia or low PH on the alternation of canine ventricular action potentials following an abrupt increase in driving rate. , 1980, Cardiovascular research.