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In July 2009, many experts in the mathematical modeling of biological sciences gathered in Les Houches for a 4-week summer school on the mechanics and physics of biological systems. The goal of the school was to present to students and researchers an integrated view of new trends and challenges in physical and mathematical aspects of biomechanics. While the scope for such a topic is very wide, they focused on problems where solid and fluid mechanics play a central role. The school covered both the general mathematical theory of mechanical biology in the context of continuum mechanics but also the specific modeling of particular systems in the biology of the cell, plants, microbes, and in physiology.These lecture notes are organized (as was the school) around five different main topics all connected by the common theme of continuum modeling for biological systems: Bio-fluidics, Bio-gels, Bio-mechanics, Bio-membranes, and Morphogenesis. These notes are not meant as a journal review of the topic but rather as a gentle tutorial introduction to the readers who want to understand the basic problematic in modeling biological systems from a mechanics perspective.
This volume investigates the application of continuum mechanics and mathematical modeling to understand the physical behavior of diverse biological systems. The editors, including Alain Goriely and Leticia Cugliandolo, compile lecture notes from the 2009 Les Houches Summer School to provide a structured pedagogical framework for researchers. By synthesizing theoretical physics with biological observation, the text establishes a foundation for analyzing mechanical processes in living organisms.
What You Will Find
Experts identify this collection as a foundational resource for students and researchers entering the field of mathematical biology. Readers frequently note the technical density of the prose, which serves as a rigorous introduction to the mechanical principles governing biological systems.
Page Count:
368
Publication Date:
2011-07-21
Publisher:
Oxford University Press
ISBN-10:
0199605831
ISBN-13:
9780199605835
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