Biomechanical Modelling at the Molecular, Cellular and Tissue Levels
J.D. Humphrey: Need for a Continuum Biochemomechanical Theory of Soft Tissue and Cellular Growth and Remodeling H. Schmid and P.J. Hunter: Multi-scale Modelling of the Heart R.W. Ogden: Anisotropy and Nonlinear Elasticity in Arterial Wall Mechanics G.A. Holzapfel: Arterial Tissue in Health and Disease: Experimental Data, Collagen-based Modeling and Simulation, Including Aortic Dissection
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Biomechanical Modelling at the Molecular, Cellular and Tissue Levels
J.D. Humphrey: Need for a Continuum Biochemomechanical Theory of Soft Tissue and Cellular Growth and Remodeling H. Schmid and P.J. Hunter: Multi-scale Modelling of the Heart R.W. Ogden: Anisotropy and Nonlinear Elasticity in Arterial Wall Mechanics G.A. Holzapfel: Arterial Tissue in Health and Disease: Experimental Data, Collagen-based Modeling and Simulation, Including Aortic Dissection
169.99 In Stock
Biomechanical Modelling at the Molecular, Cellular and Tissue Levels

Biomechanical Modelling at the Molecular, Cellular and Tissue Levels

Biomechanical Modelling at the Molecular, Cellular and Tissue Levels

Biomechanical Modelling at the Molecular, Cellular and Tissue Levels

Hardcover(2009)

$169.99 
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Overview

J.D. Humphrey: Need for a Continuum Biochemomechanical Theory of Soft Tissue and Cellular Growth and Remodeling H. Schmid and P.J. Hunter: Multi-scale Modelling of the Heart R.W. Ogden: Anisotropy and Nonlinear Elasticity in Arterial Wall Mechanics G.A. Holzapfel: Arterial Tissue in Health and Disease: Experimental Data, Collagen-based Modeling and Simulation, Including Aortic Dissection

Product Details

ISBN-13: 9783211958735
Publisher: Springer Vienna
Publication date: 05/28/2009
Series: CISM International Centre for Mechanical Sciences , #508
Edition description: 2009
Pages: 344
Product dimensions: 6.30(w) x 9.30(h) x 0.70(d)

Table of Contents

Need for a Continuum Biochemomechanical Theory of Soft Tissue and Cellular Growth and Remodeling.- Multi-scale Modelling of the Heart.- Anisotropy and Nonlinear Elasticity in Arterial Wall Mechanics.- Arterial Tissue in Health and Disease: Experimental Data, Collagen-Based Modeling and Simulation, Including Aortic Dissection.
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