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Titlebook: Visualization and Simulation of Complex Flows in Biomedical Engineering; Rui Lima,Yohsuke Imai,Mónica S. N. Oliveira Book 2014 Springer Sc

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A Survey of Quantitative Descriptors of Arterial Flows,homeostasis and (2) for the identification of those flow features that lead to changes in the function and health of vessels. While from one side there is clear evidence that regions of disrupted flow are correlated to, e.g., the localization of atherosclerosis, the development of aneurysms and non-
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,Fluid–Structure Interaction Modeling of Patient-Specific Cerebral Aneurysms,interaction (FSI) modeling of patient-specific cerebral aneurysms. The core FSI techniques are the Deforming-Spatial-Domain/Stabilized Space–Time formulation and the stabilized space–time FSI technique. The special techniques include techniques for calculating an estimated zero-pressure arterial geo
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,A Full-Eulerian Approach for the Fluid–Structure Interaction Problem,olid/membrane immersed in a fluid field is represented by a volume-fraction function (or phase function) without any material point. In addition, its material deformation at a current configuration is given by solving a transport equation for the left Cauchy-Green deformation tensor on a fixed Euler
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Physiological Significance of Cell-Free Layer and Experimental Determination of its Width in Microcards the flow centerline. The CFL formation is a prominent hemodynamic feature in the microcirculation and thus it can be a dynamic indicator for alteration of the microcirculatory system. Consequently, its dynamic characteristics (mean width and spatio-temporal variations) are important factors to
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Responses of Living Cells to Hydrodynamic Stimuli Due to Fluid Flow,uding blood and lymphatic vessels and renal tubes, which are in direct contact with flowing fluid. In addition, other cell types such as smooth muscle cells, fibroblasts, articular chondrocytes, and bone cells are subjected to interstitial fluid flow, which is the movement of fluid through the extra
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