Physical Models of Cell Motility

Physical Models of Cell Motility

Author: Igor S. Aranson

Publisher: Springer

Published: 2015-12-16

Total Pages: 208

ISBN-13: 3319244485

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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 can 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./div


Cell Movement

Cell Movement

Author: Magdalena Stolarska

Publisher: Springer

Published: 2018-10-21

Total Pages: 276

ISBN-13: 9783319968414

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This book contains a collection of original research articles and review articles that describe novel mathematical modeling techniques and the application of those techniques to models of cell motility in a variety of contexts. The aim is to highlight some of the recent mathematical work geared at understanding the coordination of intracellular processes involved in the movement of cells. This collection will benefit researchers interested in cell motility as well graduate students taking a topics course in this area.


Cell Motility

Cell Motility

Author: Peter Lenz

Publisher: Springer Science & Business Media

Published: 2008

Total Pages: 266

ISBN-13: 0387730494

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A much-needed work that provides an authoritative overview of the fundamental biological facts, theoretical models, and current experimental developments in this fascinating area. Cell motility is fundamentally important to a number of biological and pathological processes. The main challenge in the field of cell motility is to develop a complete physical description on how and why cells move. For this purpose new ways of modeling the properties of biological cells have to be found – and this volume is a major stepping-stone along the way.


The Fluid Dynamics of Cell Motility

The Fluid Dynamics of Cell Motility

Author: Eric Lauga

Publisher: Cambridge University Press

Published: 2020-11-05

Total Pages: 391

ISBN-13: 1107174651

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A pedagogical review of the mathematical modelling in fluid dynamics necessary to understand the motility of most microorganisms on Earth.


Cell Mechanics

Cell Mechanics

Author: Arnaud Chauvière

Publisher: CRC Press

Published: 2010-01-27

Total Pages: 484

ISBN-13: 1420094556

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Ubiquitous and fundamental in cell mechanics, multiscale problems can arise in the growth of tumors, embryogenesis, tissue engineering, and more. Cell Mechanics: From Single Scale-Based Models to Multiscale Modeling brings together new insight and research on mechanical, mathematical, physical, and biological approaches for simulating the behavior


Single-Cell-Based Models in Biology and Medicine

Single-Cell-Based Models in Biology and Medicine

Author: Alexander Anderson

Publisher: Springer Science & Business Media

Published: 2007-08-08

Total Pages: 346

ISBN-13: 376438123X

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Aimed at postgraduate students in a variety of biology-related disciplines, this volume presents a collection of mathematical and computational single-cell-based models and their application. The main sections cover four general model groupings: hybrid cellular automata, cellular potts, lattice-free cells, and viscoelastic cells. Each section is introduced by a discussion of the applicability of the particular modelling approach and its advantages and disadvantages, which will make the book suitable for students starting research in mathematical biology as well as scientists modelling multicellular processes.


Cell and Matrix Mechanics

Cell and Matrix Mechanics

Author: Roland Kaunas

Publisher: CRC Press

Published: 2014-10-23

Total Pages: 370

ISBN-13: 1466553820

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Explores a Range of Multiscale Biomechanics/Mechanobiology ConceptsCell and Matrix Mechanics presents cutting-edge research at the molecular, cellular, and tissue levels in the field of cell mechanics. This book involves key experts in the field, and covers crucial areas of cell and tissue mechanics, with an emphasis on the roles of mechanical forc


Cellular Potts Models

Cellular Potts Models

Author: Marco Scianna

Publisher: CRC Press

Published: 2013-03-26

Total Pages: 300

ISBN-13: 1466514795

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This work shows how the cellular Potts model can be used as a framework for model building and how extended models can achieve even better biological practicality, accuracy, and predictive power. It focuses on ways to integrate and interface the basic cellular Potts model at the mesoscopic scale with approaches that accurately model microscopic dynamics. These extensions are designed to create a nested and hybrid environment, where the evolution of a biological system is realistically driven by the constant interplay and flux of information between the different levels of description.


Dynamics of Cell and Tissue Motion

Dynamics of Cell and Tissue Motion

Author: Wolfgang Alt

Publisher: Birkhäuser

Published: 2012-12-06

Total Pages: 336

ISBN-13: 303488916X

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An interdisciplinary study explaining the dynamics underlying biological motion – one of the most obvious expressions of self-organization. Designed for a broad audience from bioscientists to applied mathematicians, this book considers possible synergetic mechanisms of interaction and cooperation on different microscopic levels.