Biomechanics of living organs : hyperelastic constitutive laws for finite element modeling /: hyperelastic constitutive laws for finite element modeling. (2017)
- Record Type:
- Book
- Title:
- Biomechanics of living organs : hyperelastic constitutive laws for finite element modeling /: hyperelastic constitutive laws for finite element modeling. (2017)
- Main Title:
- Biomechanics of living organs : hyperelastic constitutive laws for finite element modeling
- Further Information:
- Note: Yohan Payan, Jacques Ohayon.
- Authors:
- Payan, Yohan
Ohayon, Jacques - Contents:
- Part 1: Constitutive laws for biological living tissues Hyperelasticity Modeling for Incompressible Passive Biological Tissues Current Hyperelastic Models for Contractile Tissues: Application to Cardiovascular Mechanics Visco-hyperelastic strain energy function Constitutive Formulations for Soft Tissue Growth and Remodeling Strain energy function for damaged tissues Part 2: Passive soft organs Brain – Biomechanical modeling of brain soft tissues for medical applications Oesophagus – Modeling of esophageal structure and function in health and disease Aorta – Mechanical properties, histology, and biomechanical modeling Arteries & Coronaries Arterial – Wall Stiffness and Atherogenesis in Human Coronaries Breast – Clinical applications of breast biomechanics Liver – Non linear Biomechanical model of the Liver Abdomen – Mechanical modeling and clinical applications Small Intestine Bladder/prostate/rectum – Biomechanical Models of the Mobility of Pelvic Organs in the Context of Prostate Radiotherapy Uterus – Biomechanical modeling of uterus. Application to a childbirth simulation Skin – Skin mechanics Part 3: Active soft organs Skeletal muscle – Three-dimensional modeling of active muscle tissue: The why, the how, and the future Face – Computational modelling of the passive and active components of the face Tongue – Human tongue biomechanical modeling Upper airways – FRANK: a Hybrid 3D Biomechanical Model of the Head and Neck Heart – Adaptive reorientation of myofiber orientationPart 1: Constitutive laws for biological living tissues Hyperelasticity Modeling for Incompressible Passive Biological Tissues Current Hyperelastic Models for Contractile Tissues: Application to Cardiovascular Mechanics Visco-hyperelastic strain energy function Constitutive Formulations for Soft Tissue Growth and Remodeling Strain energy function for damaged tissues Part 2: Passive soft organs Brain – Biomechanical modeling of brain soft tissues for medical applications Oesophagus – Modeling of esophageal structure and function in health and disease Aorta – Mechanical properties, histology, and biomechanical modeling Arteries & Coronaries Arterial – Wall Stiffness and Atherogenesis in Human Coronaries Breast – Clinical applications of breast biomechanics Liver – Non linear Biomechanical model of the Liver Abdomen – Mechanical modeling and clinical applications Small Intestine Bladder/prostate/rectum – Biomechanical Models of the Mobility of Pelvic Organs in the Context of Prostate Radiotherapy Uterus – Biomechanical modeling of uterus. Application to a childbirth simulation Skin – Skin mechanics Part 3: Active soft organs Skeletal muscle – Three-dimensional modeling of active muscle tissue: The why, the how, and the future Face – Computational modelling of the passive and active components of the face Tongue – Human tongue biomechanical modeling Upper airways – FRANK: a Hybrid 3D Biomechanical Model of the Head and Neck Heart – Adaptive reorientation of myofiber orientation in a model of biventricular cardiac mechanics: the effect of triaxial active stress, passive shear stiffness, and activation sequence Part 4: Musculo-skeletal models Spine – Relative contribution of structure and materials in the biomechanical behavior of the human spine Thigh – Modeling of the Thigh: a 3D deformable approach considering muscle interactions Calf – Subject-specific computational prediction of the effects of elastic compression in the calf Foot – Biomechanical modeling of the foot … (more)
- Publisher Details:
- Amsterdam : Academic Press
- Publication Date:
- 2017
- Extent:
- 1 online resource
- Subjects:
- 612.028
Tissues -- Computer simulation
Organs (Anatomy) -- Computer simulation
Biomechanics
Finite element method - Languages:
- English
- ISBNs:
- 9780128040607
- Related ISBNs:
- 9780128040096
- Notes:
- Note: Description based on CIP data; item not viewed.
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.145900
- Ingest File:
- 02_096.xml