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A High-Fidelity and Micro-anatomically Accurate 3D Finite Element Model for Simulations of Functional Mitral Valve.

, , , , , , , и . FIMH, том 7945 из Lecture Notes in Computer Science, стр. 416-424. Springer, (2013)

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Multiaxial Mechanical Behavior Of Biological Materials, и . Annual Review of Biomedical Engineering, 5 (1): 251--284 (августа 2003)Development of integrated patient-specific models of the mitral valve and left ventricle: time dependent effects of ischemic mitral valve regurgitation.. Medical Imaging: Image-Guided Procedures, том 11598 из SPIE Proceedings, SPIE, (2021)High-Speed Simulation of the 3D Behavior of Myocardium Using a Neural Network PDE Approach., , , и . FIMH, том 12738 из Lecture Notes in Computer Science, стр. 416-424. Springer, (2021)Biomechanics of engineered heart valve tissues.. EMBC, стр. 853-854. IEEE, (2006)A Computational Pipeline for Patient-Specific Prediction of the Post-operative Mitral Valve Functional State., , , , , и . FIMH, том 13958 из Lecture Notes in Computer Science, стр. 636-647. Springer, (2023)A High-Fidelity 3D Micromechanical Model of Ventricular Myocardium., , , , и . FIMH, том 12738 из Lecture Notes in Computer Science, стр. 168-177. Springer, (2021)A Comprehensive Framework for the Characterization of the Complete Mitral Valve Geometry for the Development of a Population-Averaged Model., , , , , , , , и . FIMH, том 9126 из Lecture Notes in Computer Science, стр. 164-171. Springer, (2015)Modeling of Myocardium Compressibility and its Impact in Computational Simulations of the Healthy and Infarcted Heart., , , , , и . FIMH, том 10263 из Lecture Notes in Computer Science, стр. 493-501. Springer, (2017)Patient-Specific Modeling of Heart Valves: From Image to Simulation., , , , , , и . FIMH, том 7945 из Lecture Notes in Computer Science, стр. 141-149. Springer, (2013)A High-Fidelity and Micro-anatomically Accurate 3D Finite Element Model for Simulations of Functional Mitral Valve., , , , , , , и . FIMH, том 7945 из Lecture Notes in Computer Science, стр. 416-424. Springer, (2013)