Taking both sides: seeking symbiosis between intelligent prostheses and human motor control during locomotion

Author:

Huang He (Helen),Si Jennie,Brandt Andrea,Li Minhan

Funder

National Science Foundation

National Institutes of Health

Publisher

Elsevier BV

Subject

Biomedical Engineering,Biomaterials,Medicine (miscellaneous),Bioengineering

Reference48 articles.

1. OSSUR, The power knee, The Power Knee ed. https://www.ossur.com/en-us/prosthetics/knees/power-knee.

2. Ottobock, Empower (Previous BiOM), Empower Ankle ed. https://www.ottobockus.com/prosthetics/lower-limb-prosthetics/solution-overview/empower-ankle/.

3. Interactions between transfemoral amputees and a powered knee prosthesis during load carriage;Brandt;Sci Rep,2017

4. Physical performance and self-report outcomes associated with use of passive, adaptive, and active prosthetic knees in persons with unilateral, transfemoral amputation: randomized crossover trial;Hafner;J Rehabil Res Dev,2015

5. A controlled clinical trial of a clinically-tuned powered ankle prosthesis in people with transtibial amputation;Gardinier;Clin Rehabil,2018

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2. Hierarchical Optimization for Control of Robotic Knee Prostheses Toward Improved Symmetry of Propulsive Impulse;IEEE Transactions on Biomedical Engineering;2023-05

3. Design and Control of a Bionic Leg;2023 International Multi-disciplinary Conference in Emerging Research Trends (IMCERT);2023-01-04

4. A review of current state-of-the-art control methods for lower-limb powered prostheses;Annual Reviews in Control;2023

5. Active upper limb prostheses: a review on current state and upcoming breakthroughs;Progress in Biomedical Engineering;2023-01-01

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