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Physical Models of Cell Motility
Springer | Biophysics & Biological Physics | January 16, 2016 | ISBN-10: 3319244469 | 201 pages | pdf | 6.83 mb
by Igor S. Aranson (Editor)
Describes the latest computational approaches to cell movement
Includes experimental and computer animations
Surveys the most recent progress in substrate-based cell motility
Provides a comprehensive treatment of adhesion, chemical waves, and associated phenomena
About this book
This book surveys the most recent advances in physics-inspired cell movement models. This synergetic, cross-disciplinary effort to increase the fidelity of computational algorithms will lead to a better understanding of the complex biomechanics of cell movement, and stimulate progress in research on related active matter systems, from suspensions of bacteria and synthetic swimmers to cell tissues and cytoskeleton.Cell motility and collective motion are among the most important themes in biology and statistical physics of out-of-equilibrium systems, and crucial for morphogenesis, wound healing, and immune response in eukaryotic organisms. It is also relevant for the development of effective treatment strategies for diseases such as cancer, and for the design of bioactive surfaces for cell sorting and manipulation. Substrate-based cell motility is, however, a very complex process as regulatory pathways and physical force generation mechanisms are intertwined. To understand the interplay between adhesion, force generation and motility, an abundance of computational models have been proposed in recent years, from finite element to immerse interface methods and phase field approaches.This book is primarily written for physicists, mathematical biologists and biomedical engineers working in this rapidly expanding field, and ca
n serve as supplementary reading for advanced graduate courses in biophysics and mathematical biology. The e-book incorporates experimental and computer animations illustrating various aspects of cell movement.
Number of Illustrations and Tables
52 illus., 9 in colour
Topics
Biophysics and Biological Physics
Biomedical Engineering
Computer Applications in Life Sciences
Numerical and Computational Physics
Physiological, Cellular and Medical Topics
More info and Hardcover at Springer
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