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Titlebook: Biomedical Technology; Modeling, Experiment Peter Wriggers,Thomas Lenarz Book 2018 Springer International Publishing AG 2018 Computational

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楼主: Addendum
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Simulation of Steatosis Zonation in Liver Lobule—A Continuummechanical Bi-Scale, Tri-Phasic, Multi-Cr tissue, the transverse isotropic blood perfusion in the sinusoidal micro perfusion system. Furthermore, we describe the glucose metabolism in a two-scale PDE-ODE approach whereas the fat metabolism is included via phenomenological functions. Different inflow boundary conditions are tested against
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Heart Valve Flow Computation with the Space–Time Slip Interface Topology Change (ST-SI-TC) Method aning solid surfaces. The mesh covering a spinning solid surface spins with it, and the SI between that mesh and the rest of the mesh accurately connects the two sides. This maintains the high-resolution representation near solid surfaces. In the context of heart valves, the SI connects the sectors of
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Estimation of Element-Based Zero-Stress State in Arterial FSI Computations with Isogeometric Wall Dirom the arterial configuration to the straight-tube configuration, and from the estimated EBZSS of the straight-tube configuration back to the arterial configuration, to be used as the initial guess for the iterative method that matches the image-based target shape. Here we introduce the version of
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Fluid-Structure Interaction Modeling in 3D Cerebral Arteries and Aneurysms interaction procedure and resolving the added-mass effect, then develop and employ fractional PDEs to model the complex biomechanical viscoelastic properties of patient-specific aneurysms. To validate the optimal coefficient analysis, the FSI framework is applied to patient-specific aneurysms, henc
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Artificial Textile Reinforced Tubular Aortic Heart Valves—Multi-scale Modelling and Experimental Valf the composite are then compared with experimental results, resulting in good agreement. After experimental validation, the multi-scale approach is used to predict the behaviour of artificial heart valves.
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