Wearable Lower Limb Neuroprosthesis: System Architecture and Control Tuning

Author:

Carvalho Simão P.ORCID,Figueiredo JoanaORCID,Santos Cristina P.ORCID

Publisher

Springer International Publishing

Reference20 articles.

1. W. H. Organization, “WHO | International perspectives on spinal cord injury,” WHO (2013). https://www.who.int/disabilities/policies/spinal_cord_injury/en/. Accessed 22 Apr 2020

2. Marquez-Chin, C., Bolivar-Tellería, I., Popovic, M.R.: Brain–computer interfaces for neurorehabilitation: enhancing functional electrical stimulation, 2nd edn. Elsevier BV. Amsterdam

3. Moreno, J.C., Figueiredo, J., Pons, J. L.: Exoskeletons for lower-limb rehabilitation. In: Rehabilitation Robotics: Technology and Application, London, United Kingdom. Elsevier, pp. 89−100 (2018)

4. Moreno, J.C., Mohammed, S., Sharma, N., Del-Ama, A.J.: Hybrid wearable robotic exoskeletons for human walking. INC (2019)

5. Molazadeh, V., Zhang, Q., Bao, X., Dicianno, B.E., Sharma, N.: Shared control of a powered exoskeleton and functional electrical stimulation using iterative learning. Front. Robot. AI 8(11), 1–13 (2021). https://doi.org/10.3389/frobt.2021.711388

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