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Titlebook: Cardiovascular Soft Tissue Mechanics; Stephen C. Cowin,Jay D. Humphrey Book 2001 Springer Science+Business Media Dordrecht 2001 biochemist

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發(fā)表于 2025-3-21 17:22:11 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Cardiovascular Soft Tissue Mechanics
編輯Stephen C. Cowin,Jay D. Humphrey
視頻videohttp://file.papertrans.cn/222/221986/221986.mp4
圖書封面Titlebook: Cardiovascular Soft Tissue Mechanics;  Stephen C. Cowin,Jay D. Humphrey Book 2001 Springer Science+Business Media Dordrecht 2001 biochemist
描述This special volume of the Journal of Elasticity represents the first in a new p- gram dedicated to the occasional publication of collections of invited, reviewed papers of topical interest. The purpose of this program is to spotlight the dev- opments and applications in the mechanics of materials within specific areas that can enhance growth and provide insight for the advancement of the field as well as promote fundamental understanding and basic discovery. Soft Tissue Mechanics is an area of biomechanics that draws heavily upon f- damental ideas and material models from nonlinear elasticity and viscoelasticity. A major goal of this research is to understand those mechanics properties of heart, artery, collagen and skeletal muscle tissue that can be used for the diagnosis of health problems and the improvement of human life. This volume illustrates how experiment, modeling and computation is currently employed in this emerging field. May 2001 ROGER FOSDICK Editor-in-Chief Journal of Elasticity 61: ix–xii, 2000. ix Preface There are two primary areas for the application of elasticity in the biomechanics of tissues: hard tissue mechanics (e.g., bone, teeth, horns, etc.) and soft ti
出版日期Book 2001
關(guān)鍵詞biochemistry; biology; biomechanics; cardiovascular; cardiovascular system; computational mechanics; genet
版次1
doihttps://doi.org/10.1007/0-306-48389-0
isbn_softcover978-90-481-5917-8
isbn_ebook978-0-306-48389-9
copyrightSpringer Science+Business Media Dordrecht 2001
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Structure, Mechanical Properties, and Mechanics of Intracranial Saccular Aneurysms,e is general agreement that mechanics plays an essential role in each aspect of the natural history of these potentially deadly lesions. In this paper, we review recent findings that discount limit point instabilities under quasi-static increases in pressure and resonance under dynamic loading as po
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發(fā)表于 2025-3-22 00:57:12 | 只看該作者
A Model of Arterial Adaptation to Alterations in Blood Flow,le experimental data. The artery was modeled as an elastic membrane made of a nonlinear, incompressible, elastic material. Stimulation of the vascular smooth muscle was modeled through the generation of an active component of circumferential stress. The muscular tone was modulated by flow-induced sh
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發(fā)表于 2025-3-22 07:23:44 | 只看該作者
Computational Mechanics of the Heart,the cardiac cycle, when cardiac cells are not actively contracting. The orthotropic properties of the passive tissue are described here by a “pole-zero” constitutive law, whose parameters are derived in part from a model of the underlying distributions of collagen fibres. These distributions are bas
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Biaxial Mechanical Evaluation of Planar Biological Materials,l, rigorous experimentation involving all relevant deformations is necessary to obtain both the form and material constants of a strain-energy density function. For both natural biological tissues and tissue-derived soft biomaterials, there exist many physiological, surgical, and medical device appl
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Structure, Mechanical Properties, and Mechanics of Intracranial Saccular Aneurysms,and numerical studies of this process are essential to further progress in treating this class of pathologies. The purpose of this review is to provide background and direction that encourages elasticians to contribute to this import ant area of research.
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