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IEEE Transactions on Bio-Medical Engineering|January 26, 2000
Theoretical predictions of the optimal monophasic and biphasic defibrillation waveshapesM G FishlerIEEE Transactions on Bio-Medical Engineering|January 1, 1997
The transient far-field response of a discontinuous one-dimensional cardiac fiber to subthreshold stimuliM G FishlerJournal of Cardiovascular Electrophysiology|May 15, 1998
Syncytial heterogeneity as a mechanism underlying cardiac far-field stimulation during defibrillation-level shocksM G FishlerJournal of Cardiovascular Electrophysiology|December 30, 1998
Spatiotemporal effects of syncytial heterogeneities on cardiac far-field excitations during monophasic and biphasic shocksM G Fishler, K VepaPacing and Clinical Electrophysiology : PACE|November 1, 1991
A massively parallel computer model of propagation through a two-dimensional cardiac syncytiumM G Fishler, N V ThakorAnnals of Biomedical Engineering|November 1, 1994
A computer model study of the ventricular fibrillation vulnerable window: sensitivity to regional conduction depressionsM G Fishler, N V ThakorAnnals of Biomedical Engineering|January 1, 1993
Effects of defibrillation shock energy and timing on 3-D computer model of heartR A Province, M G Fishler, N V ThakorJournal of Electrocardiology|January 1, 1995
Cardiac responses to premature monophasic and biphasic field stimuli. Results from cell and tissue modeling studiesM G Fishler, E A Sobie, L Tung, et al.Journal of Cardiovascular Electrophysiology|December 1, 1996
Modeling the interaction between propagating cardiac waves and monophasic and biphasic field stimuli: the importance of the induced spatial excitatory responseM G Fishler, E A Sobie, L Tung, et al.Biophysical Journal|March 1, 1996
Mechanisms of cardiac cell excitation with premature monophasic and biphasic field stimuli: a model studyM G Fishler, E A Sobie, N V Thakor, et al.Pageof 2