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Computer Models In Biomechanics From Nano To Macro 1st Edition Ali Ghavami

  • SKU: BELL-4245518
Computer Models In Biomechanics From Nano To Macro 1st Edition Ali Ghavami
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Computer Models In Biomechanics From Nano To Macro 1st Edition Ali Ghavami instant download after payment.

Publisher: Springer Netherlands
File Extension: PDF
File size: 11.84 MB
Pages: 416
Author: Ali Ghavami, Erik Van der Giessen, Patrick R. Onck (auth.), Gerhard A. Holzapfel, Ellen Kuhl (eds.)
ISBN: 9789400754638, 9789400754645, 9400754639, 9400754647
Language: English
Year: 2013
Edition: 1

Product desciption

Computer Models In Biomechanics From Nano To Macro 1st Edition Ali Ghavami by Ali Ghavami, Erik Van Der Giessen, Patrick R. Onck (auth.), Gerhard A. Holzapfel, Ellen Kuhl (eds.) 9789400754638, 9789400754645, 9400754639, 9400754647 instant download after payment.

This book contains a collection of papers that were presented at the IUTAM Symposium

on “Computer Models in Biomechanics: From Nano to Macro” held at Stanford University, California, USA, from August 29 to September 2, 2011.

It contains state-of-the-art papers on:

- Protein and Cell Mechanics: coarse-grained model for unfolded proteins, collagen-proteoglycan structural interactions in the cornea, simulations of cell behavior on substrates

- Muscle Mechanics: modeling approaches for Ca2+–regulated smooth muscle contraction, smooth muscle modeling using continuum thermodynamical frameworks, cross-bridge model describing the mechanoenergetics of actomyosin interaction, multiscale skeletal muscle modeling

- Cardiovascular Mechanics: multiscale modeling of arterial adaptations by incorporating molecular mechanisms, cardiovascular tissue damage, dissection properties of aortic aneurysms, intracranial aneurysms, electromechanics of the heart, hemodynamic alterations associated with arterial remodeling following aortic coarctation, patient-specific surgery planning for the Fontan procedure

- Multiphasic Models: solutes in hydrated biological tissues, reformulation of mixture theory-based poroelasticity for interstitial tissue growth, tumor therapies of brain tissue, remodeling of microcirculation in liver lobes, reactions, mass transport and mechanics of tumor growth, water transport modeling in the brain, crack modeling of swelling porous media

- Morphogenesis, Biological Tissues and Organs: mechanisms of brain morphogenesis, micromechanical modeling of anterior cruciate ligaments, mechanical characterization of the human liver, in vivo validation of predictive models for bone remodeling and mechanobiology, bridging scales in respiratory mechanics

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