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Titlebook: Computer Models in Biomechanics; From Nano to Macro Gerhard A. Holzapfel,Ellen Kuhl Conference proceedings 2013 Springer Science+Business M

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Micro-structurally Based Kinematic Approaches to Electromechanics of the Heartultiplicatively decomposed into the active part and the passive part. The former is considered to be dependent on the transmembrane potential through a micro-mechanically motivated evolution equation. Moreover, the proposed kinematic framework incorporates the inherently anisotropic, active architec
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Hemodynamic Alterations Associated with Coronary and Cerebral Arterial Remodeling Following a Surgicnd hemodynamics seen in arterial adaptations. Motivated by recent aortic coarctation models in animals, we used a computational fluid-solid-interaction model to study possible local and systemic effects on the hemodynamics within the thoracic aorta and coronary, carotid, and cerebral arteries due to
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https://doi.org/10.1007/978-3-8348-9407-6 the PGs into collagen fibril coating and volumetric partitions. The model suggests that the PG coatings overlap at low hydration and set up repulsive forces that may act to maintain the collagen lattice order. Finally, we introduce a molecular-level unit cell in which volumetric domains within the
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Burkard Wördenweber,Wiro Wickordices which characterize the oscillatory nature of the direction of the wall shear stress vector, e.g., oscillatory shear index (OSI) (7/22). We subsequently outline a fluid-solid-growth framework for modeling aneurysm evolution and illustrate its application to 4 clinical cases depicting IAs. We con
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