The comparison of transfemoral amputees using mechanical and microprocessor- controlled prosthetic knee under different walking speeds: A randomized cross-over trial

Author:

Cao Wujing12,Yu Hongliu123,Zhao Weiliang12,Meng Qiaoling123,Chen Wenming12

Affiliation:

1. Rehabilitation Engineering and Technology Institute, University of Shanghai for Science and Technology, Shanghai, China

2. Shanghai Engineering Research Center of Assistive Devices, Shanghai, China

3. Key Laboratory of Neural-functional Information and Rehabilitation Engineering of the Ministry of Civil Affairs, Shanghai, China

Publisher

IOS Press

Subject

Health Informatics,Biomedical Engineering,Information Systems,Biomaterials,Bioengineering,Biophysics

Reference26 articles.

1. Geeroms J, Flynn L, Jimenez Fabian R E, et al. Design and energetic evaluation of a prosthetic knee joint actuator with a lockable parallel spring[J]. Bioinspiration & Biomimetics, 2017, 12(2).

2. Designs and performance of microprocessor-controlled knee joints[J];Thiele;Biomedizinische Technik Biomedical Engineering,2014

3. Development of a low-technology prosthetic swing-phase mechanism[J];Furse;Journal of Medical & Biological Engineering,2011

4. Target of physiological gait: Realization of speed adaptive control for a prosthetic knee during swing flexion[J];Cao;Technology & Health Care Official Journal of the European Society for Engineering & Medicine

5. Stair ascent with an innovative microprocessor-controlled exoprosthetic knee joint[J];Bellmann;Biomedical Engineering-biomedizinische Technik,2012

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