This title presents an overview of biomechanical principles for use in the evaluation and treatment of musculoskeletal dysfunction.
J Spinal Disord Tech 23: 367–371. doi: 10.1097/BSD.0b013e3181bb8568. Goel, V.K., Sairyo, K., Vishnubhotla, S.L., Biyani, A., and Ebraheim, N. 2006. Spine disorders: implications for bioengineers, in Spine Technology Handbook, ed.
The topic of this book is the modeling of data uncertainty and knowledge for a health engineering problem such as the biomechanics of the musculoskeletal system. This is the first book on this subject.
Biomechanics is the science that uses the first principles of physics for the study of the mechanics of biological systems. It touches on many areas of the natural sciences and...
This book is a comprehensive resource for professionals in the biomedical market, materials scientists and mechanical engineers, and those in academia.
This book presents the latest information on the prevalence, incidence, and costs of musculoskeletal disorders and identifies factors that influence injury reporting.
Learn the principles of biomechanics that will help you improve patient care and further your understanding of the various aspects of musculoskeletal systems. This book examines the principles of mechanical...
Special Focus boxes and clinical examples throughout the text bridge classroom content with real-world application to help you succeed in practice.
Garrett , W.E. , Jr. , P.K. Nikolaou , B.M. Ribbeck , R.R. Glisson , and A.V. Seaber . 1988. The effect of muscle architecture on the biomechanical failure properties of skeletal muscle under passive conditions .
The link between structure and function of the musculoskeletal system is clarified and explained in this complete guide to clinical kinesiology. Kinesiology of the Musculoskeletal System is the most comprehensive,...
Basic Biomechanics of the Skeletal System