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Titlebook: Computational Cardiovascular Mechanics; Modeling and Applica Julius M. Guccione,Ghassan S. Kassab,Mark B. Ratcl Book 2010 Springer-Verlag U

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书目名称Computational Cardiovascular Mechanics
副标题Modeling and Applica
编辑Julius M. Guccione,Ghassan S. Kassab,Mark B. Ratcl
视频video
概述Edited and authored by experts in the field, with both an engineering and clinical background.Identifies key links between engineering tools and clinical applications.First book to address this topic
图书封面Titlebook: Computational Cardiovascular Mechanics; Modeling and Applica Julius M. Guccione,Ghassan S. Kassab,Mark B. Ratcl Book 2010 Springer-Verlag U
描述.Computational Cardiovascular Mechanics. provides a cohesive guide to creating mathematical models for the mechanics of diseased hearts to simulate the effects of current treatments for heart failure. Clearly organized in a two part structure, this volume discusses various areas of computational modeling of cardiovascular mechanics (finite element modeling of ventricular mechanics, fluid dynamics) in addition to a description an analysis of the current applications used (solid FE modeling, CFD)...Edited by experts in the field, researchers involved with biomedical and mechanical engineering will find .Computational Cardiovascular Mechanics. a valuable reference..
出版日期Book 2010
关键词Bypass; Implantat; biomaterial; cardiovascular; cardiovascular system; computational fluid dynamics; const
版次1
doihttps://doi.org/10.1007/978-1-4419-0730-1
isbn_softcover978-1-4899-8505-7
isbn_ebook978-1-4419-0730-1
copyrightSpringer-Verlag US 2010
The information of publication is updating

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Imaging-Based Assessment and Modeling of the Structures of the Myocardiumaterial and functional properties of the tissue. By characterizing the diffusion of water exerted by its molecular environment, magnetic resonance diffusion tensor imaging has emerged as a viable alternative to conventional histology for mapping tissue fibers and offers advantages of being nondestru
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Determination of Myocardial Material Properties by Optimizationstrain in passive myocardial material properties, the material parameters of which were formally optimized using left ventricular pressure and epicardial strain measurements in a cylindrical model. Results from such a model are confined at best to the equatorial region of the left ventricle. A finit
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Geometrical Features of the Vascular System its geometry, material properties, and boundary conditions based on the balance laws of mechanics. Geometry clearly plays a major role in formulation of boundary value problems in biomechanics and is intimately related to function and physiology. Here, we shall provide an overview of the geometric
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Vascular Geometry Reconstruction and Grid Generationsis in coronary heart disease since lesions are preferentially located at bifurcation points and regions of high curvature. The influence of these local structures on recirculation and deleterious shear stresses and their role in plaque development is widely accepted. Over time, researchers have tur
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Governing Equations of Blood Flow and Respective Numerical Methods The computational fluid dynamics (CFD) method has become a powerful approach to understand blood flows in the cardiovascular system and its local features. This chapter outlines the field equations for blood flow and some of the approaches for numerical solutions. Specifically, the text focuses on
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