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Multiscale Mechanobiology of Bone Remodeling and Adaptation

117,69 €*

ISBN-13:
9783319588452
Veröffentl:
2017
Seiten:
287
Autor:
Peter Pivonka
Serie:
578, CISM International Centre for Mechanical Sciences
eBook Typ:
PDF
eBook Format:
EPUB
Kopierschutz:
1 - PDF Watermark
Sprache:
Englisch
Beschreibung:
The book presents state-of-the-art developments in multiscale modeling and latest experimental data on multiscale mechanobiology of bone remodeling and adaptation including fracture healing applications. The multiscale models include musculoskeletal models describing bone-muscle interactions during daily activities such as walking or running, micromechanical models for estimation of bone mechanical properties, bone remodeling and adaptation models, cellular models describing the complex bone-cell interactions taking into account biochemical and biomechanical regulatory factors.Also subcellular processes are covered including arrangement of actin filaments due to mechanical loading and change of receptor configurations.
The book presents state-of-the-art developments in multiscale modeling and latest experimental data on multiscale mechanobiology of bone remodeling and adaptation including fracture healing applications. The multiscale models include musculoskeletal models describing bone-muscle interactions during daily activities such as walking or running, micromechanical models for estimation of bone mechanical properties, bone remodeling and adaptation models, cellular models describing the complex bone-cell interactions taking into account biochemical and biomechanical regulatory factors.Also subcellular processes are covered including arrangement of actin filaments due to mechanical loading and change of receptor configurations.
Bone cell biology and mechanobiology.- Disease systems analysis of osteoporosis and treatments.- Bone quality assessment across the scales.- Interaction of bone tissue with other tissues including muscle, cartilage, and vascularization.- Musculoskeletal modeling of human movement.- Image-based 3D micro-FE modeling.

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