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Titlebook: Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems; Methods and Applicat Krishnan B. Chandran,H. S. Udaykuma

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书目名称Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems
副标题Methods and Applicat
编辑Krishnan B. Chandran,H. S. Udaykumar,Joseph M. Rei
视频video
概述Provides an overview of up-to-date modeling techniques and applications enhancing the assessment of human circulatory and pulmonary systems.Offers a detailed description of image acquisition, processi
图书封面Titlebook: Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems; Methods and Applicat Krishnan B. Chandran,H. S. Udaykuma
描述Image-Based Computational Modeling of the Human Circulatory and Pulmonary Systems provides an overview of the current modeling methods and applications enhancing interventional treatments and computer-aided surgery. A detailed description of the techniques behind image acquisition, processing and three-dimensional reconstruction are included. Techniques for the computational simulation of solid and fluid mechanics and structure interaction are also discussed, in addition to various cardiovascular and pulmonary applications.Engineers and researchers involved with image processing and computational modeling of human organ systems will find this a valuable reference.
出版日期Book 2011
关键词bioengineering; biomechanics; circulatory system; fluid mechanics; fluid-structure interaction; image pro
版次1
doihttps://doi.org/10.1007/978-1-4419-7350-4
isbn_softcover978-1-4899-8139-4
isbn_ebook978-1-4419-7350-4
copyrightSpringer Science + Business Media, LLC 2011
The information of publication is updating

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https://doi.org/10.1007/978-1-4419-7350-4bioengineering; biomechanics; circulatory system; fluid mechanics; fluid-structure interaction; image pro
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978-1-4899-8139-4Springer Science + Business Media, LLC 2011
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Image Acquisition for Cardiovascular and Pulmonary Applicationsowing tissue dynamics or can capture a snapshot of the changing anatomy at an instant in time. Some imaging modalities can also provide functional information, such as perfusion, ventilation, and metabolic activity, or mechanical information, such as tissue deformation and strain. With the appropria
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Computational Techniques for Biological Fluids: From Blood Vessel Scale to Blood Cells For blood flows through large vessels a Newtonian homogeneous fluid model can be adequate, while in the capillaries and in orifices and constrictions individual blood cells and interactions among blood cells assume importance. Another important feature of flows in the cardiovascular system or in th
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Formulation and Computational Implementation of Constitutive Models for Cardiovascular Soft Tissue Seeper understanding of the underlying physiology, the identification of pathological initiators, as well as the development of bioprosthetic devices, a broad variety of modeling approaches have been introduced into the literature. Central to system- and organ-level functional simulations is the need
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Mesoscale Analysis of Blood Flowlay varied and vital roles in the circulation, including transport of nutrients and dissolved gases (red blood cells), fighting infections and disease (white blood cells), and healing of wounds (platelets). Malfunctioning of blood cells can result in pathologies such as sickle cell disease (red bloo
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