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Critical Reviews in Biomedical Engineering|January 1, 1992
Models of the spreading of excitation in myocardial tissueP C Franzone, L GuerriMathematical Biosciences|February 1, 1993
Spreading of excitation in 3-D models of the anisotropic cardiac tissue. I. Validation of the eikonal modelP C Franzone, L GuerriMathematical Biosciences|October 1, 1990
Mathematical modeling of the excitation process in myocardial tissue: influence of fiber rotation on wavefront propagation and potential fieldP C Franzone, L Guerri, S TentoniJournal of Mathematical Biology|January 1, 1983
Oblique dipole layer potentials applied to electrocardiologyP Colli-Franzone, L Guerri, C ViganottiJournal of Mathematical Biology|January 1, 1990
Wavefront propagation in an activation model of the anisotropic cardiac tissue: asymptotic analysis and numerical simulationsP Colli Franzone, L Guerri, S RovidaJournal of Cardiovascular Electrophysiology|April 1, 1993
Spread of excitation in a myocardial volume: simulation studies in a model of anisotropic ventricular muscle activated by point stimulationP C Franzone, L Guerri, B TaccardiJournal of Cardiovascular Electrophysiology|August 1, 1993
Potential distributions generated by point stimulation in a myocardial volume: simulation studies in a model of anisotropic ventricular muscleP Colli Franzone, L Guerri, B TaccardiAnnals of Biomedical Engineering|February 24, 2001
Anisotropic mechanisms for multiphasic unipolar electrograms: simulation studies and experimental recordingsP C Franzone, L Guerri, M Pennacchio, et al.Journal of Cardiovascular Electrophysiology|November 17, 1998
Multiple components in the unipolar electrogram: a simulation study in a three-dimensional model of ventricular myocardiumB Taccardi, S Veronese, P C Franzone, et al.Mathematical Biosciences|January 20, 1998
Spread of excitation in 3-D models of the anisotropic cardiac tissue. II. Effects of fiber architecture and ventricular geometryP C Franzone, L Guerri, M Pennacchio, et al.Pageof 2