Multiscale Biomechanics
Editat de Jean-Francois Ganghofferen Limba Engleză Hardback – 16 ian 2018
In addition, a refresher on continuum mechanics and more advanced background related to differential geometry, configurational mechanics, mechanics of growth, thermodynamics of open systems and homogenization methods is given in separate chapters. Numerical aspects are treated in detail, and simulations are presented to illustrate models.
This book is intended for graduate students and researchers in biomechanics interested in the latest research developments, as well as those who wish to gain insight into the field of biomechanics.
- Provides a clear exposition of multiscale methods for fibrous media based on discrete homogenization and the consideration of generalized continua constitutive models for bone
- Presents recent theoretical and numerical advances for bone remodeling and growth
- Includes the necessary theoretical background that is exposed in a clear and self-contained manner
- Covers continuum mechanics and more advanced background related to differential geometry, configurational mechanics, mechanics of growth, thermodynamics of open systems and homogenization methods
Preț: 872.00 lei
Preț vechi: 1404.72 lei
-38% Nou
Puncte Express: 1308
Preț estimativ în valută:
166.88€ • 173.35$ • 138.62£
166.88€ • 173.35$ • 138.62£
Carte tipărită la comandă
Livrare economică 27 ianuarie-10 februarie 25
Livrare express 27 decembrie 24 - 02 ianuarie 25 pentru 208.08 lei
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9781785482083
ISBN-10: 1785482084
Pagini: 582
Dimensiuni: 152 x 229 x 41 mm
Greutate: 0.94 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 1785482084
Pagini: 582
Dimensiuni: 152 x 229 x 41 mm
Greutate: 0.94 kg
Editura: ELSEVIER SCIENCE
Public țintă
Researchers (from master level students to senior researchers) interested in multiscale models and numerical prediction tools for soft and hard living tissues. Students and researchers interested in modern approaches to formulate advanced constitutive models for living tissues, considering their static and evolutive (growth, remodeling) response.Cuprins
Part 1. Theoretical Basis: Continuum Mechanics, Homogenization Methods, Thermodynamics of Growing Solid Bodies 1. Tensor Calculus Jean-François GANGHOFFER 2. Continuum Mechanics Jean-François GANGHOFFER 3. Constitutive Models of Soft and Hard Living Tissues Jean-François GANGHOFFER 4. Discrete Homogenization of Network Materials Jean-François GANGHOFFER and Khaled EL NADY 5. Mechanics and Thermodynamics of Volumetric and Surface Growth Jean-François GANGHOFFER
Part 2. Multiscale Bone Mechanics 6. Micropolar Models of Trabecular Bone Jean-François GANGHOFFER and Ibrahim GODA 7. Size-Dependent Dynamic Behavior of Trabecular Bone Jean-François GANGHOFFER, Ibrahim GODA, Rachid RAHOUADJ 8. Prediction of Size Effects in Bone Brittle and Plastic Collapse Jean-François GANGHOFFER and Ibrahim GODA 9. Multiscale Aspects of Bone Internal and External Remodeling Jean-François GANGHOFFER and Ibrahim GODA 10. Integrated Remodeling to Fatigue Damage Model of Bone Jean-François GANGHOFFER and Ibrahim GODA
Part 3. Mechanics of Soft Biological Tissues: The Intervertebral Disk, Biological Networks, Ligaments and Tendons 11. Micromechanics of the Intervertebral Disk Adrien BALDIT 12. Effective Mechanical Response of Biological Membranes Khaled EL NADY, Jean-François GANGHOFFER and Ibrahim GODA 13. Micromechanics of Ligaments and Tendons Cédric LAURENT
Part 2. Multiscale Bone Mechanics 6. Micropolar Models of Trabecular Bone Jean-François GANGHOFFER and Ibrahim GODA 7. Size-Dependent Dynamic Behavior of Trabecular Bone Jean-François GANGHOFFER, Ibrahim GODA, Rachid RAHOUADJ 8. Prediction of Size Effects in Bone Brittle and Plastic Collapse Jean-François GANGHOFFER and Ibrahim GODA 9. Multiscale Aspects of Bone Internal and External Remodeling Jean-François GANGHOFFER and Ibrahim GODA 10. Integrated Remodeling to Fatigue Damage Model of Bone Jean-François GANGHOFFER and Ibrahim GODA
Part 3. Mechanics of Soft Biological Tissues: The Intervertebral Disk, Biological Networks, Ligaments and Tendons 11. Micromechanics of the Intervertebral Disk Adrien BALDIT 12. Effective Mechanical Response of Biological Membranes Khaled EL NADY, Jean-François GANGHOFFER and Ibrahim GODA 13. Micromechanics of Ligaments and Tendons Cédric LAURENT