ENGLISH

Principles of Biomechanics

Book information

Publisher
CRC Press
Year
2008
ISBN
9780849334948, 0849334942
LCC
QP301 .H87 2009
Open Library ID
OL11559721M
Language
english
Format
PDF
Filesize
9 MB (9924867 bytes)
Series
Dekker Mechanical Engineering
Edition
1
Pages
454\454
Topic
Physics
Library
Kingdwarf
Time added
2010-01-07 06:59:20

Description

Research and study in biomechanics has grown dramatically in recent years, to the extent that students, researchers, and practitioners in biomechanics now outnumber those working in the underlying discipline of mechanics itself. Filling a void in the current literature on this specialized niche, Principles of Biomechanics provides readers with a solid grasp of the fundamentals and the enabling procedures of this rapidly expanding field, placing a sharp focus on dynamic phenomena in the area of whole-body biomechanics.Applies Biodynamic Models to Everyday ActivitiesEmphasizing biodynamic modeling and the analysis of human body models, the book begins with a review of gross human anatomy and a summary of basic terminology. It describes various methods of analysis, including elementary mathematics, elementary mechanics, and the fundamental concepts of the mechanics of materials. Later chapters discuss the modeling of biosystems, tissue biomechanics, biodynamics, kinematics, kinetics, and the inertial properties of human body models. The book concludes with a review of sample applications of biodynamic models in activities such as lifting, maneuvering in space, walking, and swimming, as well as crash victim simulation.Uses simple language to convey complex principlesWith numerous professionals in a range of areas entering this field daily, there is a pressing need for a book which captures for a wide audience the principles of biomechanics analysis. Readily accessible to those with only a basic background in engineering fundamentals, mathematics, and physics, this text enables readers to understand virtually all areas of human body dynamics ranging from simple movements to optimal motions to accident victim dynamics.

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