Biological Mechanics of the Heart Valve Interstitial Cell.-Endothelial Mechanotransduction.-The Role of Proteoglycans and Glycosaminoglycans in Heart Valve Biomechanics.-On the Unique Functional Elasticity and Collagen Fiber kinematics of Heart Valve Leaflets.-Tricuspid Valve Biomechanics: A...
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Biological Mechanics of the Heart Valve Interstitial Cell.-Endothelial Mechanotransduction.-The Role of Proteoglycans and Glycosaminoglycans in Heart Valve Biomechanics.-On the Unique Functional Elasticity and Collagen Fiber kinematics of Heart Valve Leaflets.-Tricuspid Valve Biomechanics: A Brief Review.-Measurement Technologies for Heart Valve Function.-Calcific Aortic Valve Disease: Pathobiology, Basic Mechanisms, and Clinical Strategies.-Remodeling Potential of the Mitral Heart Valve Leaflet.-Molecular and Cellular Developments in Heart Valve Development and Disease.-Mechanical Mediation of Signaling Pathways in Heart Valve Development and Disease.-Tissue Engineered Heart Valves.-Decellularization in Heart Valve Tissue Engineering.-Novel Bioreactors for Mechanistic Studies of Engineered Heart Valves.-Bioprosthetic Heart Valves: From a Biomaterials Perspective.-Computational Modeling of Heart Valves: Understanding and Predicting Disease.-Biomechanics and Modeling of Tissue-Engineered Heart Valves.-Fluid-structure interaction analysis of bioprosthetic heart valves: the application of a computationally-efficient tissue constitutive model.-Towards Patient-Specific Mitral Valve Surgical Simulations.
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