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Circulation Research|September 1, 1990
Differences in the electrophysiological response of canine ventricular subendocardium and subepicardium to acetylcholine and isoproterenol. A direct effect of acetylcholine in ventricular myocardiumS H Litovsky, C AntzelevitchJournal of the American College of Cardiology|October 1, 1989
Rate dependence of action potential duration and refractoriness in canine ventricular endocardium differs from that of epicardium: role of the transient outward currentS H Litovsky, C AntzelevitchCirculation|May 1, 1984
The effects of milrinone on conduction, reflection, and automaticity in canine Purkinje fibersJ M Davidenko, C AntzelevitchJournal of Electrocardiology|March 27, 2001
Cellular and ionic mechanisms responsible for the Brugada syndromeC Antzelevitch, G X YanCirculation Research|January 1, 1988
Transient outward current prominent in canine ventricular epicardium but not endocardiumS H Litovsky, C AntzelevitchCirculation|June 1, 1986
Mechanisms underlying the antiarrhythmic and arrhythmogenic actions of quinidine in a Purkinje fiber-ischemic gap preparation of reflected reentryX T Shen, C AntzelevitchCirculation|April 1, 1994
High [Ca2+]o-induced electrical heterogeneity and extrasystolic activity in isolated canine ventricular epicardium. Phase 2 reentryJ M Di Diego, C AntzelevitchJournal of Cardiovascular Electrophysiology|June 1, 1996
Evidence for the presence of M cells in the guinea pig ventricleS Sicouri, M Quist, C AntzelevitchCirculation|September 1, 1993
Pinacidil-induced electrical heterogeneity and extrasystolic activity in canine ventricular tissues. Does activation of ATP-regulated potassium current promote phase 2 reentry?J M Di Diego, C AntzelevitchJournal of Cardiovascular Electrophysiology|October 1, 1994
Distribution of M cells in the canine ventricleS Sicouri, J Fish, C AntzelevitchPageof 10