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A framework for personalization of computational models of the human atria., , , , , и . EMBC, стр. 4324-4328. IEEE, (2011)An Interactive Virtual Reality Environment for Analysis of Clinical Atrial Arrhythmias and Ablation Planning., , , , , , и . CinC, www.cinc.org, (2017)Mini Electrodes on Ablation Catheters: Valuable Addition or Redundant Information? - Insights from a Computational Study., , , , , и . Comput. Math. Methods Medicine, (2017)Influence of background lung tissue conductivity on the cardiosynchronous EIT signal components: a sensitivity study., , , и . EMBC, стр. 1547-1550. IEEE, (2019)Myofiber orientation and electrical activation in human and sheep atrial models., , , , , , , и . EMBC, стр. 6365-6368. IEEE, (2012)Predicting Tissue Conductivity Influences on Body Surface Potentials - An Efficient Approach Based on Principal Component Analysis., , , , , и . IEEE Trans. Biomed. Eng., 58 (2): 265-273 (2011)Computer-assisted electrode positioning in biventricular pacing., , , , , и . CARS, том 1268 из International Congress Series, стр. 1102-1107. Elsevier, (2004)Three-dimensional electrophysiological and morphological computer models for individualisation of antiarrhythmic cardiac surgery., , , , , , , и . CARS, том 1268 из International Congress Series, стр. 813-818. Elsevier, (2004)Influence of Modeling Errors on the Initial Estimate for Nonlinear Myocardial Activation Times Imaging Calculated With Fastest Route Algorithm., , и . IEEE Trans. Biomed. Eng., 63 (12): 2576-2584 (2016)Mapping and Removing the Ventricular Far Field Component in Unipolar Atrial Electrograms., , , , , , , , и . IEEE Trans. Biomed. Eng., 67 (10): 2905-2915 (2020)