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Arrhythmogenic substrate for atrial fibrillation: Insights from an integrative computational model of pulmonary veins.

, , , , , , , and . EMBC, page 203-206. IEEE, (2012)

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Reconstruction of Atrial Ectopic Focal and Re-entrant Excitations from Body Surface Potentials: Insights from 3D Virtual Human Atria and Torso., , and . CinC, www.cinc.org, (2016)Computational Modelling of Cardiac Electrophysiological Changes in Malarial Fever., , , , , , and . CinC, www.cinc.org, (2016)Investigating Calcium-Mediated Arrhythmias via a Computational Model of a Rabbit Atrial Myocyte., , , and . CinC, page 1-4. www.cinc.org, (2018)Inward Rectifier Current Downregulation Promotes Spontaneous Calcium Release in a Novel Model of Rat Ventricular Electrophysiology., , , and . CinC, page 1-4. www.cinc.org, (2018)In Silico Investigation of Short QT Syndrome-Linked Potassium Channel Mutations on Electro- Mechanical Function of Human Atrial Cells., , , , and . CinC, page 853-856. www.cinc.org, (2015)From Microscopic Calcium Sparks to the ECG: Model Reduction Approaches for Multi-scale Cardiac Simulation., , and . CinC, page 325-328. www.cinc.org, (2015)A New Model of the Human Atrial Myocyte with Variable T-tubule Organization for the Study of Atrial Fibrillation., , , and . CinC, www.cinc.org, (2016)HCN and SCN5A Channel Mutations: Implications for Impaired Atrioventricular Nodal Conduction in a Heterogeneous Computer Model of Whole Mouse Heart., , , , and . CinC, page 41-44. www.cinc.org, (2013)Role of Fiber Orientation in Atrial Arrythmogenesis., , , , , , , , and . CinC, page 1041-1044. www.cinc.org, (2014)Arrhythmogenic substrate for atrial fibrillation: Insights from an integrative computational model of pulmonary veins., , , , , , , and . EMBC, page 203-206. IEEE, (2012)