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Multi-physics and Multi-scale Modelling in Cardiovascular Physiology: Advanced User Methods for Simulation of Biological Systems with ANSYS/CFX.

, , , , и . International Conference on Computational Science (1), том 4487 из Lecture Notes in Computer Science, стр. 794-801. Springer, (2007)

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A Big Data Approach to Myocyte Membrane Analysis: Using Populations of Models to Understand the Cellular Causes of Heart Failure., , , , , , и . CinC, www.cinc.org, (2017)Multi-physics and Multi-scale Modelling in Cardiovascular Physiology: Advanced User Methods for Simulation of Biological Systems with ANSYS/CFX., , , , и . International Conference on Computational Science (1), том 4487 из Lecture Notes in Computer Science, стр. 794-801. Springer, (2007)Systemic modelling and computational physiology: The application of Bond Graph boundary conditions for 3D cardiovascular models., , , , и . Simul. Model. Pract. Theory, 17 (1): 125-136 (2009)Using Populations of Models to Navigate Big Data in Electrophysiology: Evaluation of Parameter Sensitivity of Action Potential Models., , , , , , и . CinC, www.cinc.org, (2017)Integrating a Bond Graph Based Model of Chemo Mechanical Coupling with Huxley's Sliding Filament Theory., , , и . ESM, стр. 423-427. SCS Europe, (2002)A Multiscale and Patient-specific Computational Framework of Atherosclerosis Formation and Progression: A Case Study in the Aorta and Peripheral Arteries., , , и . ICCS, том 51 из Procedia Computer Science, стр. 1118-1127. Elsevier, (2015)Predicting Atherosclerotic Plaque Location in an Iliac Bifurcation Using a Hybrid CFD/Biomechanical Approach., , , , , и . IWBBIO (2), том 9044 из Lecture Notes in Computer Science, стр. 594-606. Springer, (2015)Evaluating the Risks of Arrhythmia through Big Data: Automatic Processing and Neural Networks to Classify Epicardial Electrograms., , , , , , и . CinC, www.cinc.org, (2017)