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Nonlinear Mechanics Of Fibrous Biological Materials


Nonlinear Mechanics Of Fibrous Biological Materials
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Nonlinear Mechanics Of Fibrous Biological Materials


Nonlinear Mechanics Of Fibrous Biological Materials
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Author : Peter W. Grimmer
language : en
Publisher:
Release Date : 2017

Nonlinear Mechanics Of Fibrous Biological Materials written by Peter W. Grimmer and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with categories.




Mechanics Of Fibrous Materials And Applications


Mechanics Of Fibrous Materials And Applications
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Author : Catalin Picu
language : en
Publisher: Springer
Release Date : 2019-07-31

Mechanics Of Fibrous Materials And Applications written by Catalin Picu and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2019-07-31 with Technology & Engineering categories.


The book explores the state of the art in the mechanics of fibrous media, providing an overview of the theoretical, modelling and practical aspects of designing and working with these materials. It also describes the advanced methods needed to handle their specific features, including the mechanics of generalized continua, dedicated homogenization methods and computational techniques, and presents applications of fibrous media to diverse fields and over a broad spectrum of scales, ranging from aeronautics to biomechanics.



Nonlinear Mechanics Of Soft Fibrous Materials


Nonlinear Mechanics Of Soft Fibrous Materials
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Author : Luis Dorfmann
language : en
Publisher: Springer
Release Date : 2014-12-02

Nonlinear Mechanics Of Soft Fibrous Materials written by Luis Dorfmann and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-12-02 with Science categories.


The book presents a state-of-the-art overview of the fundamental theories, established models and ongoing research related to the modeling of these materials. Two approaches are conventionally used to develop constitutive relations for highly deformable fibrous materials. According to the phenomenological approach, a strain energy density function can be defined in terms of strain invariants. The other approach is based on kinetic theories, which treats a fibrous material as a randomly oriented inter-tangled network of long molecular chains bridged by permanent and temporary junctions. At the micro-level, these are associated with chemical crosslinks and active entanglements, respectively. The papers include carefully crafted overviews of the fundamental formulation of the three-dimensional theory from several points of view, and address their equivalences and differences. Also included are solutions to boundary-value problems which are amenable to experimental verification. A further aspect is the elasticity of filaments, stability of equilibrium and thermodynamics of the molecular network theory.



Nonlinear Mechanics Of Shells And Plates In Composite Soft And Biological Materials


Nonlinear Mechanics Of Shells And Plates In Composite Soft And Biological Materials
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Author : Marco Amabili
language : en
Publisher: Cambridge University Press
Release Date : 2018-11

Nonlinear Mechanics Of Shells And Plates In Composite Soft And Biological Materials written by Marco Amabili and has been published by Cambridge University Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-11 with Science categories.


This book guides the reader into the modelling of shell structures in applications where advanced composite materials or complex biological materials must be described with great accuracy. A valuable resource for researchers, professionals and graduate students, it presents a variety of practical concepts, diagrams and numerical results.



Mechanics Of Microstructured Solids


Mechanics Of Microstructured Solids
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Author : J.-F. Ganghoffer
language : en
Publisher: Springer Science & Business Media
Release Date : 2009-05-14

Mechanics Of Microstructured Solids written by J.-F. Ganghoffer and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2009-05-14 with Science categories.


This is a compendium of reviewed articles presented at the 11th EUROMECH-MECAMAT conference entitled, "Mechancis of microstructured solids: cellular materials, fibre reinforced solids and soft tissues." It provides all the latest information in the field.



Nonlinear Mechanics Of Fibrous Networks


Nonlinear Mechanics Of Fibrous Networks
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Author :
language : en
Publisher:
Release Date : 2016

Nonlinear Mechanics Of Fibrous Networks written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016 with categories.




Mechanics Of Soft Materials


Mechanics Of Soft Materials
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Author : Konstantin Volokh
language : en
Publisher: Springer
Release Date : 2016-06-17

Mechanics Of Soft Materials written by Konstantin Volokh and has been published by Springer this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-06-17 with Science categories.


This book provides a concise introduction to soft matter modelling. It offers an up-to-date review of continuum mechanical description of soft and biological materials from the basics to the latest scientific materials. It includes multi-physics descriptions, such as chemo-, thermo-, electro- mechanical coupling. It derives from a graduate course at Technion that has been established in recent years. It presents original explanations for some standard materials and features elaborated examples on all topics throughout the text. PowerPoint lecture notes can be provided to instructors.



Mechanics Of Fibrous Materials And Applications


Mechanics Of Fibrous Materials And Applications
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Author : Catalin Picu
language : en
Publisher:
Release Date : 2020

Mechanics Of Fibrous Materials And Applications written by Catalin Picu and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2020 with Materials science categories.


The book explores the state of the art in the mechanics of fibrous media, providing an overview of the theoretical, modelling and practical aspects of designing and working with these materials. It also describes the advanced methods needed to handle their specific features, including the mechanics of generalized continua, dedicated homogenization methods and computational techniques, and presents applications of fibrous media to diverse fields and over a broad spectrum of scales, ranging from aeronautics to biomechanics.



Mechanics Of Biological Tissue


Mechanics Of Biological Tissue
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Author : Gerhard A. Holzapfel
language : en
Publisher: Springer Science & Business Media
Release Date : 2006-06-03

Mechanics Of Biological Tissue written by Gerhard A. Holzapfel and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-06-03 with Science categories.


The mechanics of biological tissues is a multidisciplinary and rapidly expanding area of research. This book points to important directions combining mechanical sciences with the new developments in biology. It delivers articles on mechanics of tissues at the molecular, cellular, tissue and organ levels.



Force Transmission Mechanisms In Fibrous Biological Structures


Force Transmission Mechanisms In Fibrous Biological Structures
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Author : Hossein Ahmadzadeh
language : en
Publisher:
Release Date : 2017

Force Transmission Mechanisms In Fibrous Biological Structures written by Hossein Ahmadzadeh and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017 with categories.


Understanding the mechanism of the load bearing and force transmission throughout fibrous biological structures can help decode complex physiological and pathological phenomena and provide insight into possible therapeutic solutions. Fibrous structures are characterized by one-dimensional fibers stabilized by cross-linking proteins and molecules. Preferentially aligned fibers form well-organized parallel bundles, whereas randomly distributed fibers create isotropic three-dimensional networks. Tendons, composed of staggered arrangements of collagen fibrils, and axonal cytoskeleton in neurons, composed of alternate rows of microtubules, are two instances of structures with aligned fibers. Collagen fibrous networks which make up the extracellular matrix (ECM) of connective tissues are an example of fibrous structures with random orientation of the fibers. As fibrous structures respond to external stresses, cross-linking elements transfer the loads between the fibers and transmit the bulk deformations from one end of the structure to the other end. This mechanical machinery allows these structures to sustain large deformations and transfer tissue scale forces to the subcellular level. In this thesis, we quantify the influence of this mechanism on several physiological and pathological processes related to tendons, axons, and ECMs. First, we employ the shear-lag model (SLM) to quantitatively identify the key parameters affecting the mechanical behavior of fibrous materials. Next, by extending the SLM and including poroelastic effects, we study the movement of the interstitial fluid throughout fibrous tissues. Notably, our model explains the exudation of fluid from tendon structures in response to tensile stretching, in agreement with previous observations. By incorporating the dynamics of the engagement of the cross-links in the load transfer pathway, we elucidate the underlying mechanism of viscoelastic behavior of fibrous tissues. In particular, the rate-dependent vulnerability of axons to dynamic loadings during brain injury is modeled and validated with previous in vitro studies. Finally, we study the nonlinear elasticity induced by the realignment and reorganization of the collagen fibers in the ECM and examine its impact on regulating cell-matrix interactions. Notably, our model shows that mechanical principles mediated by the ECM nonlinearity and the contractility of the cells play a crucial role in determining the phenotype of the tumor cells.