Enhancing the Efficacy of Lower-body Assistive Devices Through the Understanding of Human Movement in the Real World
Author:
Affiliation:
1. University of Michigan,Mechanical Engineering,Ann Arbor,MI,USA,48109
2. West Virginia University,Chemical and Biomedical Engineering,Morgantown,WV,USA,26505
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10160211/10160212/10161051.pdf?arnumber=10161051
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1. Virtual Constraint Control of a Powered Prosthetic Leg: From Simulation to Experiments With Transfemoral Amputees
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3. As-sessing the relative contributions of active ankle and knee assistance to the walking mechanics of transfemoral amputees using a powered prosthesis;ingraham;PLoS ONE,2016
4. Evaluating physiological signal salience for estimating metabolic energy cost from wearable sensors
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