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Titlebook: Vascular Engineering; New Prospects of Vas Kazuo Tanishita,Kimiko Yamamoto Book 2016 Springer Japan 2016 atherosclerosis.biomaterials.endot

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Introduction,roach. The integrated view of vascular system at multiple scales based on the multi-disciplinary approaches is referred to as vascular engineering. The vascular engineering aims to construct an integrated view, which comprises analysis, synthesis and medical applications. This book focuses on these three aspects of vascular engineering.
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Innovations in Measuring Cellular Mechanics,skeletal remodeling, and focal adhesion reorganization and crucial for a variety of higher fundamental cell functions including cell division, motility, and differentiation. Introducing these unique methods of measuring and understanding cellular mechanics, therefore, provides a valuable platform for cell biology research.
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Fundamentals of Physiology and Biology of Vascular System,undamental to maintain the physiological function of each organ connected to parallel fashion. Once vascular system becomes malfunction, the severe pathological condition threatening our lives occurs in our body. This is why vascular system finely adjusts the blood flow in corresponding to the deman
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Hemodynamics in Physio- and Pathological Vessels,lar systems. A cardiovascular system is a series of blood vessels connected to the heart. Pressure generated in the heart propels blood through the system continuously. In this chapter, basic hemodynamics essential to interpretation of arterial disease in the aspect of bio-fluid mechanics are introd
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Cyclic Stretch-Induced Reorganization of Stress Fibers in Endothelial Cells,nment and elongation of ECs along the long axis of the vessel. Thus, ECs align perpendicular to the principal direction of cyclic stretch. At arterial bifurcations and regions of curvature, however, ECs do not exhibit an aligned morphology. The absence of aligned cell morphology at non-straight regi
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Tensile Properties of Smooth Muscle Cells, Elastin, and Collagen Fibers,used by the vascular smooth muscle cells (VSMCs) in the media, detailed understanding of the mechanical environment of the VSMCs is indispensable to know the mechanism of the adaptation. Artery wall has been often assumed to be homogenous in conventional mechanical analyses from macroscopic viewpoin
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