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Mathematical Biosciences|July 17, 1998
Spread of excitation in 3-D models of the anisotropic cardiac tissue. III. Effects of ventricular geometry and fiber structure on the potential distributionP Colli Franzone, L Guerri, M Pennacchio, et al.Mathematical Biosciences|July 16, 2008
Modeling ventricular repolarization: effects of transmural and apex-to-base heterogeneities in action potential durationsP Colli Franzone, L F Pavarino, S Scacchi, et al.Mathematical Biosciences|March 31, 2009
A reliability analysis of cardiac repolarization time markersS Scacchi, P Colli Franzone, L F Pavarino, et al.American Journal of Physiology. Heart and Circulatory Physiology|August 21, 2007
Monophasic action potentials generated by bidomain modeling as a tool for detecting cardiac repolarization timesP Colli Franzone, L F Pavarino, S Scacchi, et al.Mathematical Biosciences|July 21, 2019
Role of infarct scar dimensions, border zone repolarization properties and anisotropy in the origin and maintenance of cardiac reentryP Colli-Franzone, V Gionti, L F Pavarino, et al.Hepato-Gastroenterology|October 27, 2001
Impact of the introduction of laparoscopic cholecystectomy on the population aged 70 and overM Elli, D Poliziani, P Colli Franzone, et al.Circulation Research|September 1, 1982
Potential fields generated by oblique dipole layers modeling excitation wavefronts in the anisotropic myocardium. Comparison with potential fields elicited by paced dog hearts in a volume conductorP Colli-Franzone, L Guerri, C Viganotti, et al.Computers in Biology and Medicine|July 31, 2021
A clinical-in silico study on the effectiveness of multipoint bicathodic and cathodic-anodal pacing in cardiac resynchronization therapyG Dell'Era, M Gravellone, S Scacchi, et al.Pageof 2