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Book
Biomechanics : Concepts and Computation
Authors: --- ---
ISBN: 0521875587 9780521875585 9780511802720 9780521172967 0511479271 9780511479274 9781139129466 1139129465 0511802722 1107386489 9781107386488 1107198526 9781107198524 1283330008 9781283330008 9786613330000 6613330000 1139134515 9781139134514 1139132938 9781139132930 0511477759 9780511477751 0521172969 Year: 2009 Publisher: Cambridge : Cambridge University Press,

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Abstract

This is the first textbook to integrates both general and specific topics, theoretical background and biomedical engineering applications, as well as analytical and numerical approaches. This quantitative approach integrates the classical concepts of mechanics and computational modelling techniques, in a logical progression through a wide range of fundamental biomechanics principles. Online MATLAB-based software along with examples and problems using biomedical applications will motivate undergraduate biomedical engineering students to practise and test their skills. The book covers topics such as kinematics, equilibrium, stresses and strains, and also focuses on large deformations and rotations and non-linear constitutive equations, including visco-elastic behaviour and the behaviour of long slender fibre-like structures. This is the definitive textbook for students.


Book
Biomechanics : concepts and computation
Authors: --- --- ---
ISBN: 1316732355 1316730425 1316681637 Year: 2018 Publisher: Cambridge : Cambridge University Press,

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Abstract

Thoroughly revised and updated for the second edition, this comprehensive textbook integrates basic and advanced concepts of mechanics with numerical methods and biomedical applications. Coverage is expanded to include a complete introduction to vector and tensor calculus, and new or fully updated chapters on biological materials and continuum mechanics, motion, deformation and rotation, and constitutive modelling of solids and fluids. Topics such as kinematics, equilibrium, and stresses and strains are also included, as well as the mechanical behaviour of fibres and the analysis of one-dimensional continuous elastic media. Numerical solution procedures based on the Finite Element Method are presented, with accompanying MATLAB-based software and dozens of new biomedical engineering examples and exercises allowing readers to practise and improve their skills. Solutions for instructors are also available online. This is the definitive guide for both undergraduate and graduate students taking courses in biomechanics.

Keywords

Biomechanics.

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