Towards prosthetic limbs and assistive devices controlled via the myokinetic interface
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s44287-024-00043-8.pdf
Reference12 articles.
1. Yuan, B., Hu, D., Gu, S., Xiao, S. & Song, F. The global burden of traumatic amputation in 204 countries and territories. Front. Public Health 11, 1258853 (2023).
2. Controzzi, M., Clemente, F., Barone, D., Ghionzoli, A. & Cipriani, C. The SSSA-MyHand: a dexterous lightweight myoelectric hand prosthesis. IEEE Trans. Neural Syst. Rehabil. Eng. 25, 459–468 (2017).
3. Schmidl, H. The Inail-Ceca prostheses. Orthot. Prosthet. 27, 6–12 (1973).
4. Salminger, S. et al. Current rates of prosthetic usage in upper-limb amputees-have innovations had an impact on device acceptance? Disabil. Rehabil. 44, 3708–3713 (2020).
5. Montero, J. et al. The myokinetic stimulation interface: activation of proprioceptive neural responses with remotely actuated magnets implanted in rodent forelimb muscle. J. Neural Eng. 19, 026048 (2022).
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