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Critical Reviews in Biomedical Engineering|January 1, 1988
Models of the electrical activity of the heart and computer simulation of the electrocardiogramR M GulrajaniMathematical Biosciences|November 1, 1992
Improving Tikhonov regularization with linearly constrained optimization: application to the inverse epicardial potential solutionI Iakovidis, R M GulrajaniJournal of Electrocardiology|October 1, 1993
A computer heart model incorporating anisotropic propagation. I. Model construction and simulation of normal activationM Lorange, R M GulrajaniFederation Proceedings|June 1, 1978
Possible mechanisms underlying bursting pacemaker discharges in invertebrate neuronsR M Gulrajani, F A RobergeIEEE Transactions on Bio-Medical Engineering|January 1, 1997
A new method for regularization parameter determination in the inverse problem of electrocardiographyP R Johnston, R M GulrajaniCirculation Research|January 1, 1983
A simulation study of the effects of torso inhomogeneities on electrocardiographic potentials, using realistic heart and torso modelsR M Gulrajani, G E MaillouxIEEE Transactions on Bio-Medical Engineering|September 29, 2000
Selecting the corner in the L-curve approach to Tikhonov regularizationP R Johnston, R M GulrajaniAnnals of Biomedical Engineering|May 1, 1997
Effects of rotational myocardial anisotropy in forward potential computations with equivalent heart dipolesM Thivierge, R M Gulrajani, P SavardCritical Reviews in Biomedical Engineering|January 1, 1988
The inverse problem in electrocardiography: solutions in terms of equivalent sourcesR M Gulrajani, P Savard, F A RobergeJournal of Electrocardiology|October 1, 1993
A computer heart model incorporating anisotropic propagation. II. Simulations of conduction blockM Lorange, R M Gulrajani, R A Nadeau, et al.Pageof 2