Articles | Volume 11, issue 2
https://doi.org/10.5194/ms-11-425-2020
https://doi.org/10.5194/ms-11-425-2020
Research article
 | 
06 Nov 2020
Research article |  | 06 Nov 2020

Design and evaluation of a hybrid passive–active knee prosthesis on energy consumption

Xiaoming Wang, Qiaoling Meng, Zhewen Zhang, Jinyue Sun, Jie Yang, and Hongliu Yu

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Cited articles

Ahn, H. J., Lee, K. H., and Lee, C. H.: Design optimization of a knee joint for an active transfemoral prosthesis for weight reduction, J. Mech. Sci. Technol., 31, 5905–5913, https://doi.org/10.1007/s12206-017-1134-9, 2017. 
Andrade, R. M., Filho, B., Vimieiro, C. B. S., and Pinotti, M.: Evaluating Energy Consumption of an Active Magnetorheological Knee Prosthesis, in: 19th International Conference on Advanced Robotics (ICAR), Belo Horizonte, Brazil, 2–6 December 2019, 75–80, 2019. 
Awad, M. I., Dehghani-Sanij, A. A., Moser, D., and Zahedi, S.: Motor electrical damping for back-drivable prosthetic knee, in: 11th France-Japan & 9th Europe-Asia Congress on Mechatronics (MECATRONICS)/17th International Conference on Research and Education in Mechatronics (REM), Compiegne, France, 15–17 June 2016, 348–353, 2016. 
Cao, W., Yu, H., Zhao, W., Meng, Q. L., and Chen, W. M.: The comparison of transfemoral amputees using mechanical and microprocessor-controlled prosthetic knee under different walking speeds: A randomized cross-over trial, Technol. Health Care, 26, 1–12, https://doi.org/10.3233/THC-171157, 2018a. 
Cao, W., Yu, H., Zhao, W., Meng, Q. L., and Chen, W. M.: Structure Design and Motion Simulation of a Microprocessor-Controlled Prosthetic Knee, in: International Conference on Man-Machine-Environment System Engineering, Singapore, December 2018, 107–114, 2018b.