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Mechanics of Biological Tissue

Author: Gerhard A Holzapfel; Ray W Ogden
Publisher: Berlin, Heidelberg : Springer-Verlag Berlin Heidelberg, 2006.
Edition/Format:   eBook : Document : EnglishView all editions and formats
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Genre/Form: Electronic books
Ressources Internet
Congrès
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Gerhard A Holzapfel; Ray W Ogden
ISBN: 9783540311843 354031184X
OCLC Number: 300238114
Notes: Titre de l'écran-titre (visionné le 2 juillet 2008).
Description: 1 online resource.
Contents: Cover --
Contents --
Part I: Tissue Growth and Remodelling --
Towards a Theory of Vascular Growth and Remodeling --
Complementary Roles of Theoretical Modeling and Computer-controlled Experimentation in Vascular Growth and Remodeling --
On the Modeling of Growth and Adaptation --
Growth in Soft Biological Tissue and Residual Stress Development --
Characterization and Modeling of Growth and Remodeling in Tendon and Soft Tissue Constructs --
Modeling and Simulation of Remodeling in Soft Biological Tissues --
Anisotropic Remodelling of Biological Tissues --
A Mechanobiological Formulation of Bone Healing --
Continuum Models of Growth with Emphasis on Articular Cartilage --
Part II: Micromechanics, Cells and Matrix --
Tensile Properties and Local Stiffness of Cells --
Microfluid-dynamics in Three-dimensional Engineered Cell Systems --
Nonlinear Constitutive Models for Cochlear Outer Hair Cells --
Prediction of Changes in Cell-substrate Contact under Cyclic Substrate Deformation Using Cohesive Zone Modelling --
Micromechanics and Macromechanics of the Tensile Deformation of Nacre --
Part III: Arteries in Health and Disease --
Mechanical Properties of Atherosclerotic Tissues --
Towards a Computational Methodology for Optimizing Angioplasty Treatments with Stenting --
Computational Modeling of Stented Arteries: Considerations for Evolving Stent Designs --
Simulation of In-stent Restenosis for the Design of Cardiovascular Stents --
Material Property Alterations with Early Atheroma in an Animal Model --
Microscopic Analysis of Residual Stress and Strain in the Aortic Media Considering Anisotropy of Smooth Muscle Layer --
Parameter Identification in Arteries Using Constraints --
Collagen Organization and Biomechanics of the Arteries and Aneurysms of the Human Brain --
Image-based Simulation of Blood Flow and Arterial Wall Interaction for Cerebral Aneurysms --
Part IV: Biological Tissues --
A Framework for Soft Tissue and Musculo-skeletal Modelling: Clinical Uses and Future Challenges --
Invariant Formulation for Dispersed Transverse Isotropy in Tissues of the Aortic Outflow Tract --
Mathematical Modelling of Cardiac Mechanoenergetics --
Creep and Relaxation in Ligament: Theory, Methods and Experiment --
Viscoelastic Constitutive Law Based on the Time Scale of the Mechanical Phenomena --
A Coupled FE Analysis of the Intervertebral Disc Based on a Multiphasic TPM Formulation --
Is the Free Energy of Hydrogel the Sum of Elastic Energy and Ionic Energy? --
In Vivo Experiments to Characterize the Mechanical Behavior of the Human Uterine Cervix --
Viscoelastic Response of Vocal Fold Tissues and Scaffolds at High Frequencies --
An Alternative Fabric-based Yield and Failure Criterion for Trabecular Bone --
Part V Image-based Analysis --
Functional Micro-imaging at the Interface of Bone Mechanics and Biology --
Strain Measurement Using Deformable Image Registration --
Image-based Hierarchical Analysis and Design of Tissue Engineering Scaffolds --
Index --
Last Page
Responsibility: edited by Gerhard A. Holzapfel, Ray W. Ogden.

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