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Medical Progress Through Technology|January 1, 1989
Using structural and visual information in physiological systems modelingJ A de Guise, F A RobergeMedical & Biological Engineering & Computing|July 1, 1989
Model study of the spread of electrotonic potential in cardiac tissueF A Roberge, L Boucher, A VinetMathematical Biosciences|May 1, 1993
On the interpretation of voltage-clamp data using the Hodgkin-Huxley modelJ Beaumont, F A Roberge, L J LeonCanadian Journal of Physiology and Pharmacology|August 1, 1975
Roles of the AV junction in determining the ventricular response to atrial fibrillationJ Billette, F A Roberge, R A NadeauMathematical Biosciences|June 1, 1993
Estimation of the steady-state characteristics of the Hodgkin-Huxley model from voltage-clamp dataJ Beaumont, F A Roberge, D R LemieuxJournal of Theoretical Biology|February 7, 1992
Modeling the dynamic features of the electrogenic Na,K pump of cardiac cellsD R Lemieux, F A Roberge, D JolyJournal of Theoretical Biology|January 9, 1990
A model study of the contribution of active Na-K transport to membrane repolarization in cardiac cellsD R Lemieux, F A Roberge, P SavardJournal of Theoretical Biology|August 21, 1994
Modeling a non-inactivating delayed rectifier cardiac current using voltage clamp dataD R Lemieux, H Chicoine, F A RobergeAnnals of Biomedical Engineering|November 1, 1996
Interactions between adjacent fibers in a cardiac muscle bundleS Wang, L J Leon, F A RobergeIEEE Transactions on Bio-Medical Engineering|December 1, 1992
A model study of electric field interactions between cardiac myocytesH Hogues, L J Leon, F A RobergePageof 5