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Methods (San Diego, Calif.)|January 29, 2020
Multi-scale approaches for the simulation of cardiac electrophysiology: II - Tissue-level structure and functionAlan P Benson, Harley J Stevenson-Cocks, Dominic G Whittaker, et al.
The Journal of Physiology|June 5, 2013
Pro-arrhythmogenic effects of atrial fibrillation-induced electrical remodelling: insights from the three-dimensional virtual human atriaMichael A Colman, Oleg V Aslanidi, Sanjay Kharche, et al.
Progress in Biophysics and Molecular Biology|July 19, 2011
3D virtual human atria: A computational platform for studying clinical atrial fibrillationOleg V Aslanidi, Michael A Colman, Jonathan Stott, et al.
The Journal of Physiology|May 17, 2019
Dynamic clamping human and rabbit atrial calcium current: narrowing ICaL window abolishes early afterdepolarizationsSarah Kettlewell, Priyanka Saxena, John Dempster, et al.
Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|February 1, 2013
Arrhythmogenic substrate for atrial fibrillation: insights from an integrative computational model of pulmonary veinsOleg V Aslanidi, Michael A Colman, Jichao Zhao, et al.
Europace : European Pacing, Arrhythmias, and Cardiac Electrophysiology : Journal of the Working Groups on Cardiac Pacing, Arrhythmias, and Cardiac Cellular Electrophysiology of the European Society of Cardiology|August 3, 2014
Effects of human atrial ionic remodelling by β-blocker therapy on mechanisms of atrial fibrillation: a computer simulationSanjay R Kharche, Tomas Stary, Michael A Colman, et al.
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