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Evolutionary Biomechanics Is The Study Of Evolution Through The Analysis Of Biomechanical Systems. Its Unique Advantage Is The Precision With Which Physical Constraints And Performance Can Be Predicted From First Principles. Instead Of Reviewing The Entire Breadth Of The Biomechanical Literature, A Few Key Examples Are Explored In Depth As Vehicles For Discussing Fundamental Concepts, Analytical Techniques, And Evolutionary Theory. Each Chapter Develops A Conceptual Theme, Developing The Underlying Theory And Techniques Required For Analyses In Evolutionary Biomechanics. Examples From Terrestrial Biomechanics, Metabolic Scaling, And Bird Flight Are Used To Analyse How Physics Constrains The Design Space That Natural Selection Is Free To Explore, And How Adaptive Evolution Finds Solutions To The Trade-offs Between Multiple Complex Conflicting Performance Objectives. Evolutionary Biomechanics Is Suitable For Graduate Level Students And Professional Researchers In The Fields Of Biomechanics, Physiology, Evolutionary Biology And Palaeontology. It Will Also Be Of Relevance And Use To Researchers In The Physical Sciences And Engineering.
This text investigates how physical constraints and biomechanical performance metrics dictate the boundaries of evolutionary adaptation. Authors Adrian M. K. Thomas and Graham D. Taylor utilize a first-principles approach to demonstrate how physics limits the design space available to natural selection. By focusing on specific case studies rather than broad literature reviews, the authors establish a rigorous framework for analyzing trade-offs in complex biological systems.
What You Will Find
Scope Limits
Experts identify this work as a specialized resource for graduate students and researchers in biology and engineering. Readers frequently note the technical density of the prose, which requires a strong background in physics and mathematics to fully comprehend the analytical models presented.
Page Count:
176
Publication Date:
2014-01-01
Publisher:
Oup Oxford
ISBN-10:
019100927X
ISBN-13:
9780191009273
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