Multi-scale Extracellular Matrix Mechanics and Mechanobiology
Title | Multi-scale Extracellular Matrix Mechanics and Mechanobiology PDF eBook |
Author | Yanhang Zhang |
Publisher | Springer |
Pages | 401 |
Release | 2019-07-12 |
Genre | Technology & Engineering |
ISBN | 3030201821 |
This book describes the current state of knowledge in the field of multi-scale ECM mechanics and mechanobiology with a focus on experimental and modelling studies in biomechanical characterization, advanced optical microscopy and imaging, as well as computational modeling. This book also discusses the scale dependency of ECM mechanics, translation of mechanical forces from tissue to cellular level, and advances and challenges in improving our understanding of cellular mechanotransduction in the context of living tissues and organisms.
Multi-scale Extracellular Matrix Mechanics and Mechanobiology
Title | Multi-scale Extracellular Matrix Mechanics and Mechanobiology PDF eBook |
Author | Yanhang Zhang |
Publisher | |
Pages | 392 |
Release | 2020 |
Genre | Biomedical engineering |
ISBN | 9783030201838 |
This book describes the current state of knowledge in the field of multi-scale ECM mechanics and mechanobiology with a focus on experimental and modelling studies in biomechanical characterization, advanced optical microscopy and imaging, as well as computational modeling. This book also discusses the scale dependency of ECM mechanics, translation of mechanical forces from tissue to cellular level, and advances and challenges in improving our understanding of cellular mechanotransduction in the context of living tissues and organisms.
Structure and Function of the Extracellular Matrix
Title | Structure and Function of the Extracellular Matrix PDF eBook |
Author | Bela Suki |
Publisher | Academic Press |
Pages | 284 |
Release | 2021-11-27 |
Genre | Technology & Engineering |
ISBN | 0128226056 |
Structure and Function of the Extracellular Matrix: A Multiscale Quantitative Approach introduces biomechanics and biophysics with applications to understand the biological function of the extracellular matrix in health and disease. A general multiscale approach is followed by investigating behavior from the scale of single molecules, through fibrils and fibers, to tissues of various organ systems. Through mathematical models and structural information, quantitative description of the extracellular matrix function is derived with tissue specific details. The book introduces the properties and organization of extracellular matrix components and quantitative models of the matrix, and guides the reader through predicting functional properties. This book integrates evolutionary biology with multiscale structure to quantitatively understand the function of the extracellular matrix. This approach allows a fresh look into normal functioning as well as the pathological alterations of the extracellular matrix. Professor Suki's book is written to be useful to undergraduates, graduate students, and researchers interested in the quantitative aspects of the extracellular matrix. Researchers working in mechanotransduction, respiratory and cardiovascular mechanics, and multiscale biomechanics of tendon, cartilage, skin, and bone may also be interested in this book. - Examines the evolutionary origins and consequences of the extracellular matrix - Delivers the first book to quantitatively treat the extracellular matrix as a multiscale system - Presents problems and a set of computational laboratory projects in various chapters to aid teaching and learning - Provides an introduction to the properties and organization of the extracellular matrix components
Solid (Bio)mechanics: Challenges of the Next Decade
Title | Solid (Bio)mechanics: Challenges of the Next Decade PDF eBook |
Author | Gerhard Sommer |
Publisher | Springer Nature |
Pages | 447 |
Release | 2022-06-14 |
Genre | Technology & Engineering |
ISBN | 3030923398 |
This book offers a comprehensive and timely overview of the latest developments in the field of biomechanics and extensive knowledge of tissue structure, function, and modeling. Gathering chapters written by authoritative scientists, it reports on a range of continuum and computational models of solids, and related experimental works, for biomechanical applications. It discusses cutting-edge advances such as constitutive modeling and computational simulation of biological tissues and organs under physiological and pathological conditions, and their mechanical characterization. It covers innovative studies on arteries, heart, valvular tissue, and thrombus, brain tumor, muscle, liver, kidney, and stomach, among others. Written in honor of Professor Gerhard A. Holzapfel, the book provides specialized readers with a thorough and timely overview of different types of modeling in biomechanics, and current knowledge about biological structures and function.
Multiscale Modeling in Biomechanics and Mechanobiology
Title | Multiscale Modeling in Biomechanics and Mechanobiology PDF eBook |
Author | Suvranu De |
Publisher | Springer |
Pages | 287 |
Release | 2014-10-10 |
Genre | Technology & Engineering |
ISBN | 1447165993 |
Presenting a state-of-the-art overview of theoretical and computational models that link characteristic biomechanical phenomena, this book provides guidelines and examples for creating multiscale models in representative systems and organisms. It develops the reader's understanding of and intuition for multiscale phenomena in biomechanics and mechanobiology, and introduces a mathematical framework and computational techniques paramount to creating predictive multiscale models. Biomechanics involves the study of the interactions of physical forces with biological systems at all scales – including molecular, cellular, tissue and organ scales. The emerging field of mechanobiology focuses on the way that cells produce and respond to mechanical forces – bridging the science of mechanics with the disciplines of genetics and molecular biology. Linking disparate spatial and temporal scales using computational techniques is emerging as a key concept in investigating some of the complex problems underlying these disciplines. Providing an invaluable field manual for graduate students and researchers of theoretical and computational modelling in biology, this book is also intended for readers interested in biomedical engineering, applied mechanics and mathematical biology.
Biomaterials for Implants and Scaffolds
Title | Biomaterials for Implants and Scaffolds PDF eBook |
Author | Qing Li |
Publisher | Springer |
Pages | 472 |
Release | 2016-11-30 |
Genre | Technology & Engineering |
ISBN | 3662535742 |
This book highlights the latest, cutting-edge advances in implantable biomaterials. It brings together a class of advanced biomaterials in two highly active research areas, namely implants and tissue scaffolds, to underline their respective functional requirements for further development. It is unique in providing a full range of methodological procedures, including materials syntheses, characterisation, cellular tests and mathematical modelling. Covering metallic, ceramic, polymeric and composite materials commonly used in biological applications and clinical therapeutics, it is a valuable resource for anyone wanting to further their understanding of the latest developments in implantable biomaterials. Focusing on biomedical applications in implants and scaffolds, it provides methodological guides to this rapidly growing field. Qing Li and Yiu-Wing Mai are both professors at the University of Sydney, School of Aerospace, Mechanical and Mechatronic Engineering.
Mechanobiology of Cell-Cell and Cell-Matrix Interactions
Title | Mechanobiology of Cell-Cell and Cell-Matrix Interactions PDF eBook |
Author | A. Wagoner Johnson |
Publisher | Springer Science & Business Media |
Pages | 329 |
Release | 2011-02-21 |
Genre | Technology & Engineering |
ISBN | 1441980830 |
Mechanobiology of Cell-Matrix Interactions focuses on characterization and modeling of interactions between cells and their local extracellular environment, exploring how these interactions may mediate cell behavior. Studies of cell-matrix interactions rely on integrating engineering, (molecular and cellular) biology, and imaging disciplines. Recent advances in the field have begun to unravel our understanding of how cells gather information from their surrounding environment, and how they interrogate such information during the cell fate decision making process. Topics include adhesive and integrin-ligand interactions; extracellular influences on cell biology and behavior; cooperative mechanisms of cell-cell and cell-matrix interactions; the mechanobiology of pathological processes; (multi-scale) modeling approaches to describe the complexity or cell-matrix interactions; and quantitative methods required for such experimental and modeling studies.