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Materiomics: Multiscale Mechanics of Biological Materials and Structures: CISM International Centre for Mechanical Sciences, cartea 546

Editat de Markus J. Buehler, Roberto Ballarini
en Limba Engleză Hardback – 23 apr 2013
Multiscale mechanics of hierarchical materials plays a crucial role in understanding and engineering biological and bioinspired materials and systems. The mechanical science of hierarchical tissues and cells in biological systems has recently emerged as an exciting area of research and provides enormous opportunities for innovative basic research and technological advancement. Such advances could enable us to provide engineered materials and structure with properties that resemble those of biological systems, in particular the ability to self-assemble, to self-repair, to adapt and evolve, and to provide multiple functions that can be controlled through external cues. This book presents material from leading researchers in the field of mechanical sciences of biological materials and structure, with the aim to introduce methods and applications to a wider range of engineers.
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Specificații

ISBN-13: 9783709115732
ISBN-10: 3709115736
Pagini: 149
Ilustrații: VII, 149 p. 50 illus. in color.
Dimensiuni: 155 x 235 x 17 mm
Greutate: 0.5 kg
Ediția:2013
Editura: SPRINGER VIENNA
Colecția Springer
Seria CISM International Centre for Mechanical Sciences

Locul publicării:Vienna, Austria

Public țintă

Research

Cuprins

Multiscale modeling of biomaterials and tissues.- The mechanics of individual collagen fibrils: experiments using MEMS platforms, multiscale modeling and theory.- Multiscale simulations of collagen fibril mechanics.- Optical tweezers.- Experiment of human physiology and disease.- Advances in experimental cell biology and cell-material interactions.

Textul de pe ultima copertă

Multiscale mechanics of hierarchical materials plays a crucial role in understanding and engineering biological and bioinspired materials and systems. The mechanical science of hierarchical tissues and cells in biological systems has recently emerged as an exciting area of research and provides enormous opportunities for innovative basic research and technological advancement. Such advances could enable us to provide engineered materials and structure with properties that resemble those of biological systems, in particular the ability to self-assemble, to self-repair, to adapt and evolve, and to provide multiple functions that can be controlled through external cues. This book presents material from leading researchers in the field of mechanical sciences of biological materials and structure, with the aim to introduce methods and applications to a wider range of engineers.

Caracteristici

Includes a clear description of methods and tools in this emerging field Includes case studies that demonstrate the impact of this work Includes references and citations for further literature