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Mechanics in Development and Disease

Mechanics in Development and Disease
Author:
Publisher: Elsevier
Total Pages: 122
Release: 2024-07-01
Genre: Science
ISBN: 0128240334

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Mechanics in Development and Disease, Volume 160 in the Current Topics in Developmental Biology series, highlights new advances in the field, with this new volume presenting interesting chapters on a variety of timely topics, including Gut developmental mechanics, Long bone developmental mechanics, Cranial plate fusion developmental mechanics, Mechanobiology and vasculogenesis, Morphogenesis and mechanics of the developing inner ear, Morphogenesis and mechanics of body wall closure in mammals, Salivary bud developmental mechanics, Lateral plate mesoderm developmental mechanics, Biomechanics of human embryo implantation, gastrulation, and organ formation, Mechanics of lung development across species, Mechanics early development in vertebrates. Provides the latest information on cancer research Offers outstanding and original reviews on a range of cancer research topics Serves as an indispensable reference for researchers and students alike


Mechanobiology in Health and Disease

Mechanobiology in Health and Disease
Author: Stefaan Verbruggen
Publisher: Academic Press
Total Pages: 527
Release: 2018-08-09
Genre: Technology & Engineering
ISBN: 0128129530

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Mechanobiology in Health and Disease brings together contributions from leading biologists, clinicians, physicists and engineers in one convenient volume, providing a unified source of information for researchers in this highly multidisciplinary area. Opening chapters provide essential background information on cell mechanotransduction and essential mechanobiology methods and techniques. Other sections focus on the study of mechanobiology in healthy systems, including bone, tendons, muscles, blood vessels, the heart and the skin, as well as mechanobiology studies of pregnancy. Final chapters address the nascent area of mechanobiology in disease, from the study of bone conditions, skin diseases and heart diseases to cancer. A discussion of future perspectives for research completes each chapter in the volume. This is a timely resource for both early-career and established researchers working on mechanobiology. Provides an essential digest of primary research from many fields and disciplines in one convenient volume Covers both experimental approaches and descriptions of mechanobiology problems from mathematical and numerical perspectives Addresses the hot topic of mechanobiology in disease, a particularly dynamic field of frontier science


Multi-scale Extracellular Matrix Mechanics and Mechanobiology

Multi-scale Extracellular Matrix Mechanics and Mechanobiology
Author: Yanhang Zhang
Publisher:
Total Pages: 392
Release: 2020
Genre: Biomedical engineering
ISBN: 9783030201838

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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.


Mechanics of Biological Tissue

Mechanics of Biological Tissue
Author: Gerhard A. Holzapfel
Publisher: Springer Science & Business Media
Total Pages: 510
Release: 2006-06-03
Genre: Science
ISBN: 354031184X

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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.


The Pathomechanics Of Tissue Injury And Disease, And The Mechanophysiology Of Healing

The Pathomechanics Of Tissue Injury And Disease, And The Mechanophysiology Of Healing
Author: Amit Gefen
Publisher:
Total Pages: 414
Release: 2009-01-01
Genre: Bones
ISBN: 9788130803142

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Over the last decade, it became clear that mechanical factors, such as deformations, forces and stiffness properties have critical influence on a wide spectrum of diseases. Traditionally, since the 1960's, mechanics has been associated mainly with orthopaedics, trauma and rehabilitation as well as with cardiovascular problems, and so, the work of biomechanists was mostly related to these areas. This led, for example, to good understanding of the loading conditions at which bone fractures occur, and how bone fractures can be healed more quickly if their mechanical environment is adequately controlled (e.g. via compression plate-screw systems). However, more recently, on the 1980's-1990's, it was discovered that mechanics has much more fundamental roles and effects on biological processes, as many cell types appeared to be responsive to mechanical stimuli. This boosted biomechanical research on the effects of mechanical factors at the microscopic scale of tissues, and the fields of mechanobiology and mechanotransduction emerged. Most recently, on the 2000's, there were studies, e.g. by Dr. Valerie Weaver and colleagues (as described in this book), reporting that at the cell scale, inadequate mechanical stimuli may even provoke cancer. Hence, the role of integration between mechanics, life sciences and medicine is growing rapidly, and becomes more important by the day. What allows this integration to expand so fast is the development of sophisticated bioengineering research and analysis tools. These include highly realistic computer simulations, small animal MRI, micro-sensors, bio-reactors and many other recent breakthroughs that allow precision measurements of the mechanical conditions that apply in tissues at different levels of architectural hierarchy, whereas at the same time, close monitoring of the biological responses to these mechanical conditions became possible. This exciting atmosphere is at the background of the present book, which contains perspectives from leading scientists worldwide on the role of mechanics in injury, disease and healing. The topics covered span from bone tumors to pressure ulcers and from osteoarthritis to breast cancer, which illustrates how mechanics is now identified as the common denominator in so many important chronic conditions, as opposed to just trauma. In view of the multi-disciplinary and diverse nature of this book, I expect it to be appealing to a broad readership, obviously including biomechanists but also medical doctors, physiologists, cell biologists, physiotherapists, nurses and all those who are interested in reading on the latest developments in our journey towards understanding the complex connections between mechanics and biology.


Cardiovascular Soft Tissue Mechanics

Cardiovascular Soft Tissue Mechanics
Author: Stephen C. Cowin
Publisher: Springer Science & Business Media
Total Pages: 252
Release: 2001
Genre: Mathematics
ISBN: 1402002203

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Cowin (New York Center for Biomedical Engineering) and Humphrey (biomedical engineering, Texas A&M U.) present seven papers that discuss current research and future directions. Topics concern tissues within the cardiovascular system (arteries, the heart, and biaxial testing of planar tissues such as heart valves). Themes include an emphasis on data on the underlying microstructure, especially collagen; the consideration of the fact that both arteries and the heart contain muscle and that there is, therefore, a need to quantify both the active and passive response; constitutive relations for active behavior; and the growth and remodeling of cardiovascular tissues. Of interest to cardiovascular and biomechanics soft tissue researchers, and bioengineers. Annotation copyrighted by Book News, Inc., Portland, OR.


Mechanical Engineering in Biomedical Application

Mechanical Engineering in Biomedical Application
Author: Jay Prakash Srivastava
Publisher: John Wiley & Sons
Total Pages: 452
Release: 2024-01-31
Genre: Mathematics
ISBN: 1394174527

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MECHANICAL ENGINEERING IN BIOMEDICAL APPLICATIONS The book explores the latest research and developments related to the interdisciplinary field of biomedical and mechanical engineering offering insights and perspectives on the research, key technologies, and mechanical engineering techniques used in biomedical applications. The book is divided into several sections that cover different aspects of mechanical engineering in biomedical research. The first section focuses on the role of additive manufacturing technologies, rehabilitation in healthcare applications, and artificial recreation of human organs. The section also covers the advances, risks, and challenges of bio 3D printing. The second section presents insight into biomaterials, including their properties, applications, and fabrication techniques. The section also covers the use of powder metallurgy methodology and techniques of biopolymer and bio-ceramic coatings on prosthetic implants. The third section covers biofluid mechanics, including the mechanics of fluid flow within our body, the mechanical aspects of human synovial fluids, and the design of medical devices for fluid flow applications. The section also covers the use of computational modeling to study the blockage of carotid arteries. The final section elaborates on soft robotic manipulation for use in medical sciences. Audience The book provides practical insights and applications for mechanical engineers, biomedical engineers, medical professionals, and researchers working on the design and development of biomedical devices and implants.


Multi-scale Extracellular Matrix Mechanics and Mechanobiology

Multi-scale Extracellular Matrix Mechanics and Mechanobiology
Author: Yanhang Zhang
Publisher: Springer
Total Pages: 392
Release: 2019-07-12
Genre: Technology & Engineering
ISBN: 3030201821

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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.


Nuclear Mechanics and Genome Regulation

Nuclear Mechanics and Genome Regulation
Author:
Publisher: Academic Press
Total Pages: 393
Release: 2010-10-12
Genre: Science
ISBN: 0123810108

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In recent years new discoveries have made this an exciting and important field of research. This exhaustive volume presents comprehensive chapters and detailed background information for researchers working with in the field of nuclear mechanics and genome regulation. Both classic and state-of-the-art methods readily adaptable and designed to last the test of time Relevant to clinicians and scientists working in a wide range of fields