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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.Journal of Biological Physics|August 12, 2009
The virtual ventricular wall: a tool for exploring cardiac propagation and arrhythmogenesisArun V Holden, Oleg V Aslanidi, Alan P Benson, et al.Interface Focus|January 16, 2014
Heterogeneous and anisotropic integrative model of pulmonary veins: computational study of arrhythmogenic substrate for atrial fibrillationOleg V Aslanidi, Michael A Colman, Marta Varela, et al.Journal of Molecular and Cellular Cardiology|April 28, 2012
Postnatal development of transmural gradients in expression of ion channels and Ca²⁺-handling proteins in the ventricleEman S H Abd Allah, Oleg V Aslanidi, James O Tellez, 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.IEEE Transactions on Medical Imaging|April 20, 2017
Novel MRI Technique Enables Non-Invasive Measurement of Atrial Wall ThicknessMarta Varela, Ross Morgan, Adeline Theron, et al.European Journal of Pharmaceutical Sciences : Official Journal of the European Federation for Pharmaceutical Sciences|September 6, 2011
Virtual tissue engineering of the human atrium: modelling pharmacological actions on atrial arrhythmogenesisOleg V Aslanidi, Moza Al-Owais, Alan P Benson, et al.IEEE Transactions on Medical Imaging|July 26, 2012
Application of micro-computed tomography with iodine staining to cardiac imaging, segmentation, and computational model developmentOleg V Aslanidi, Theodora Nikolaidou, Jichao Zhao, et al.Pageof 3