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Undergraduate Titles > Exercise Physiology
Biomechanics Of Musculoskeletal Injury
Whiting, William C.
ISBN 13: 
9780873227797
ISBN 10: 
0873227794
Category: 
Exercise Physiology
Edition: 
1
Publisher: 
Human Kinetics
Format: 
Cloth
LC Call Number: 
RD680.W47 1998
Doody Star Rating: 
    (See Review)
Status: 
Out of Print
Affiliation: 
California State University, Northridge
Audience: 
Undergraduate
Dimensions: 
11.3 x 0.8 x 8.7 in
Pages: 
273
Weight: 
2.6
Retail Price: 
61.00
Quantity On Hand: 
0
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Synopsis:
Audiences: Reference for physical therapists, occupational therapists, athletic trainers, physicians, osteopaths, kinesiologists, chiropractors, and exercise scientists. Text for upper-level undergraduate or graduate courses in biomechanics, kinesiology, physical therapy, and athletic training. In the first book of its kind, noted biomechanists William Whiting and Ronald Zernicke explore the mechanical bases of musculoskeletal injury to better understand causal mechanisms, the effect of injury on musculoskeletal tissues, and how our current knowledge of biomechanics can contribute to injury prevention. Never before has the broad spectrum of injury mechanics been covered so completely in a single book. From introductory biomechanics to detailed examinations of the mechanical aspects of common injuries, Biomechanics of Musculoskeletal Injury provides a solid foundation for in-depth study. The book includes comprehensive information on the basic biomechanical concepts of force, stress and strain, stiffness, and elasticity; the mechanics of joints that are subject to disabling injury; the structure of connective tissues (bone, cartilage, tendons, and ligaments), which are most often involved in musculoskeletal injuries; and factors such as age, gender, nutrition, and exercise, which affect the musculoskeletal system's response to force. After providing the reader with a fundamental understanding of tissue structure and function, the authors then proceed with detailed explorations of the mechanisms of common injuries, including inversion ankle sprains, stress fractures, and other lower-extremity injuries; rotator cuff tears, carpal tunnel syndrome, and other injuries to the upper extremities; and concussions, intervertebral disc injuries, and other injuries that afflict the head, neck, and trunk. Packed with more than 300 drawings, photos, and tables, Biomechanics of Musculoskeletal Injury is both visually compelling and indispensable a

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