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Cardiovascular Research|September 1, 1996
Phase 2 reentry as a mechanism of initiation of circus movement reentry in canine epicardium exposed to simulated ischemiaA Lukas, C AntzelevitchJournal of Cardiovascular Electrophysiology|January 19, 2002
Cellular basis for complex T waves and arrhythmic activity following combined I(Kr) and I(Ks) blockT Emori, C AntzelevitchCirculation Research|June 1, 1991
A subpopulation of cells with unique electrophysiological properties in the deep subepicardium of the canine ventricle. The M cellS Sicouri, C AntzelevitchJournal of Cardiovascular Electrophysiology|August 1, 1995
Electrophysiologic characteristics of M cells in the canine left ventricular free wallS Sicouri, C AntzelevitchCirculation|October 10, 1997
Sodium channel block with mexiletine is effective in reducing dispersion of repolarization and preventing torsade des pointes in LQT2 and LQT3 models of the long-QT syndromeW Shimizu, C AntzelevitchScience (New York, N.Y.)|November 9, 1979
Phase resetting and annihilation of pacemaker activity in cardiac tissueJ Jalife, C AntzelevitchJournal of Cardiovascular Pharmacology|March 1, 1985
The effects of milrinone on action potential characteristics, conduction, automaticity, and reflected reentry in isolated myocardial fibersJ Davidenko, C AntzelevitchCanadian Journal of Physiology and Pharmacology|July 1, 1989
Reflected reentry, delayed conduction, and electrotonic inhibition in segmentally depressed atrial tissuesA Lukas, C AntzelevitchCirculation|October 12, 1999
Cellular basis for the Brugada syndrome and other mechanisms of arrhythmogenesis associated with ST-segment elevationG X Yan, C AntzelevitchPageof 9