Craelius | Prosthetic Designs for Restoring Human Limb Function | Buch | 978-3-030-31076-9 | sack.de

Buch, Englisch, 224 Seiten, HC runder Rücken kaschiert, Format (B × H): 160 mm x 241 mm, Gewicht: 530 g

Craelius

Prosthetic Designs for Restoring Human Limb Function

Buch, Englisch, 224 Seiten, HC runder Rücken kaschiert, Format (B × H): 160 mm x 241 mm, Gewicht: 530 g

ISBN: 978-3-030-31076-9
Verlag: Springer International Publishing


This textbook provides a thorough introduction and overview of the design and engineering of state-of-the-art prosthetics and assistive technologies. Innovations in prosthetics are increasingly made by cross-disciplinary thinking, and the author introduces the application of biomedical, mechanical, electrical, computer, and materials engineering principles to the design of artificial limbs. Coverage includes the fundamentals of biomechanics, biomechanical modeling and measurements, the basics of anatomy and physiology of limb defects, and the historical development of prosthetic design. This book stimulates the innovative thinking necessary for advancing limb restoration, and will be essential reading for students, as well as researchers, professional engineers, and prosthetists involved in the design and manufacture of artificial limbs.

- Learning enhanced by the exercises, including physical modeling with MATLAB and Simulink;
- Includes appendices with relevant equations and parameters for reference;
- Introduction to the design and engineering of prosthetics and assistive technologies.
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Zielgruppe


Upper undergraduate


Autoren/Hrsg.


Weitere Infos & Material


Chapter 1. Introduction.- Chapter 2. Biomechanical Fundamentals.- Chapter 3. Biomechanical Measurements.- Chapter 4. Restoring the Lower Limb.- Chapter 5. Energetics of Gait.- Chapter 6. Human- Machine Interface.- Chapter 7. Prosthetic Control.- Chapter 8. Limb-Prosthetic Interface.- Chapter 9. Upper-limb Function.- Chapter 10. Advancing Prosthetic Designs.


William Craelius, Ph.D, is currently Professor of Biomedical Engineering at Rutgers University. He received a B.S. in Mechanical Analysis and Design from the University of Illinois, and a Ph.D. in Biomedical Engineering from Northwestern University. He did Postdoctoral research at Stanford University in Neuroscience. At Rutgers, he co-founded the first M.S. degree program in Prosthetics. He holds seven U.S. patents and has authored 62 peer-reviewed publications in the field of Biomedical Engineering, and developed a dexterous prosthetic hand, as seen in international media.


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