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Materials (Basel, Switzerland)|March 17, 2018
Optical and Electrical Characterization of Biocompatible Polymeric Lines for Hemodialysis ApplicationsEnrico Ravagli, Stefano Severi
Computational and Mathematical Methods in Medicine|January 15, 2015
Human atrial cell models to analyse haemodialysis-related effects on cardiac electrophysiology: work in progressElisa Passini, Simonetta Genovesi, Stefano Severi
Frontiers in Physiology|February 9, 2026
K+ channel blockade limits AF and suppresses phase 3 EADs by slowing repolarization in an electromechanical cell computational modelFazeelat Mazhar, Stefano Severi, Chiara Bartolucci
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|May 6, 2009
From in vivo plasma composition to in vitro cardiac electrophysiology and in silico virtual heart: the extracellular calcium enigmaStefano Severi, Cristiana Corsi, Elisabetta Cerbai
Progress in Biophysics and Molecular Biology|November 14, 2022
The virtual sinoatrial node: What did computational models tell us about cardiac pacemaking?Eugenio Ricci, Chiara Bartolucci, Stefano Severi
Frontiers in Physiology|June 20, 2022
A Novel In Silico Electromechanical Model of Human Ventricular CardiomyocyteChiara Bartolucci, Mohamadamin Forouzandehmehr, Stefano Severi, et al.
Journal of Electrocardiology|April 16, 2002
Effect of electrolyte and pH changes on the sinus node pacemaking in humansStefano Severi, Silvio Cavalcanti, Elena Mancini, et al.
The International Journal of Artificial Organs|November 12, 2016
Finite-element modeling of time-dependent sodium exchange across the hollow fiber of a hemodialyzer by coupling with a blood pool modelEnrico Ravagli, Elena Grandi, Paolo Rovatti, et al.
IEEE Transactions on Bio-Medical Engineering|March 8, 2019
A New Method for Continuous Relative Blood Volume and Plasma Sodium Concentration Estimation During HemodialysisEnrico Ravagli, Mattias Holmer, Leif Sornmo, et al.
The Journal of Physiology|February 11, 2017
Computational analysis of the human sinus node action potential: model development and effects of mutationsAlan Fabbri, Matteo Fantini, Ronald Wilders, et al.
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