Biomechanics of Living Organs. Hyperelastic Constitutive Laws for Finite Element Modeling
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Biomechanics of Living Organs: Hyperelastic Constitutive Laws for Finite Element Modeling is the first book to cover finite element biomechanical modeling of each organ in the human body. This collection of chapters from the leaders in the field focuses on the constitutive laws for each organ. Each author introduces the state-of-the-art concerning constitutive laws and then illustrates the implementation of such laws with Finite Element Modeling of these organs. The focus of each chapter is on instruction, careful derivation and presentation of formulae, and methods. When modeling tissues, this book will help users determine modeling parameters and the variability for particular populations. Chapters highlight important experimental techniques needed to inform, motivate, and validate the choice of strain energy function or the constitutive model. Remodeling, growth, and damage are all covered, as is the relationship of constitutive relationships of organs to tissue and molecular scale properties (as net organ behavior depends fundamentally on its sub components). This book is intended for professionals, academics, and students in tissue and continuum biomechanics. Content: Front Matter,Copyright,Contributors,PrefaceEntitled to full textPart 1: Constitutive Laws for Biological Living TissuesChapter 1 - Hyperelasticity Modeling for Incompressible Passive Biological Tissues, Pages 3-30, Grégory Chagnon, Jacques Ohayon, Jean-Louis Martiel, Denis Favier Chapter 2 - Hyperelastic Models for Contractile Tissues: Application to Cardiovascular Mechanics, Pages 31-58, Jacques Ohayon, Davide Ambrosi, Jean-Louis Martiel Chapter 3 - Viscohyperelastic Strain Energy Function, Pages 59-78, Arne Vogel, Lalao Rakotomanana, Dominique P. Pioletti Chapter 4 - Constitutive Formulations for Soft Tissue Growth and Remodeling, Pages 79-100, Christian J. Cyron, John S. Wilson, Jay D. Humphrey Chapter 5 - Modeling of Damage in Soft Biological Tissues, Pages 101-123, Gerhard A. Holzapfel, Behrooz Fereidoonnezhad Chapter 6 - Biomechanical Modeling of Brain Soft Tissues for Medical Applications, Pages 127-146, Fanny Morin, Matthieu Chabanas, Hadrien Courtecuisse, Yohan Payan Chapter 7 - Esophagus, Pages 147-167, Donghua Liao, Jingbo Zhao, Hans Gregersen Chapter 8 - Aorta, Pages 169-191, Thomas C. Gasser Chapter 9 - Arterial Wall Stiffness and Atherogenesis in Human Coronaries, Pages 193-213, Jacques Ohayon, Saami K. Yazdani, Mauro Malvè, Ahmed M. Gharib, Alberto Garcia, Gérard Finet, Roderic I. Pettigrew Chapter 10 - Clinical Applications of Breast Biomechanics, Pages 215-242, Thiranja P. Babarenda Gamage, Poul M.F. Nielsen, Martyn P. Nash Chapter 11 - Nonlinear Biomechanical Model of the Liver, Pages 243-265, Stéphanie Marchesseau, Simon Chatelin, Hervé Delingette Chapter 12 - Human Abdomen: Mechanical Modeling and Clinical Applications, Pages 267-285, Estefanía Peña, Belén Hernández-Gascón, Begoña Calvo Chapter 13 - Constitutive Modeling of the Small Intestine, Pages 287-305, Chiara Bellini, Paul Glass, Elena S. Di Martino Chapter 14 - Bladder/Prostate/Rectum: Biomechanical Models of the Mobility of Pelvic Organs in the Context of Prostate Radiotherapy, Pages 307-324, Mohamed Bader Boubaker, Jean-François Ganghoffer Chapter 15 - Uterus, Pages 325-346, Florence Zara, Olivier Dupuis Chapter 16 - Skin Mechanics, Pages 347-357, Cees W.J. Oomens, Marc van Vijven, Gerrit W.M. Peters Chapter 17 - Three-Dimensional Modeling of Active Muscle Tissue: The Why, The How, and The Future, Pages 361-375, Silvia S. Blemker Chapter 18 - Computational Modeling of the Passive and Active Components of the Face, Pages 377-394, Cormac Flynn, Mohammad Ali Nazari, Pascal Perrier, Sidney Fels, Poul M.F. Nielsen, Yohan Payan Chapter 19 - Human Tongue Biomechanical Modeling, Pages 395-411, Nicolas Hermant, Pascal Perrier, Yohan Payan Chapter 20 - FRANK: A Hybrid 3D Biomechanical Model of the Head and Neck, Pages 413-447, Peter Anderson, Sidney Fels, Negar M. Harandi, Andrew Ho, Scott Moisik, C. Antonio Sánchez, Ian Stavness, Keyi Tang Chapter 21 - Adaptive Reorientation of Myofiber Orientation in a Model of Biventricular Cardiac Mechanics: The Effect of Triaxial Active Stress, Passive Shear Stiffness, and Activation Sequence, Pages 449-468, Marieke Pluijmert, Tammo Delhaas, Peter H.M. Bovendeerd Chapter 22 - Spine, Pages 471-495, Sébastien Laporte, Maxim Van den Abbeele, Pierre-Yves Rohan, Clayton Adam, Philippe Rouch, Wafa Skalli Chapter 23 - Modeling of the Thigh: A 3D Deformable Approach Considering Muscle Interactions, Pages 497-521, Julien Stelletta, Raphaël Dumas, Yoann Lafon Chapter 24 - Subject-Specific Computational Prediction of the Effects of Elastic Compression in the Calf, Pages 523-544, Fanny Frauziols, Pierre Badel, Laurent Navarro, Jérôme Molimard, Nicolas Curt, Stéphane Avril Chapter 25 - Biomechanical Modeling of the Foot, Pages 545-563, Antoine Perrier, Vincent Luboz, Marek Bucki, Francis Cannard, Nicolas Vuillerme, Yohan Payan Index, Pages 565-575
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