Achilli, G.M.; Amici, C.; Dragusanu, M.; Gobbo, M.; Logozzo, S.; Malvezzi, M.; Tiboni, M.; Valigi, M.C.
Soft, Rigid, and Hybrid Robotic Exoskeletons for Hand Rehabilitation: Roadmap with Impairment-Oriented Rationale for Devices Design and Selection. Appl. Sci. 2023, 13, 11287.
https://doi.org/10.3390/app132011287
AMA Style
Achilli GM, Amici C, Dragusanu M, Gobbo M, Logozzo S, Malvezzi M, Tiboni M, Valigi MC.
Soft, Rigid, and Hybrid Robotic Exoskeletons for Hand Rehabilitation: Roadmap with Impairment-Oriented Rationale for Devices Design and Selection. Applied Sciences. 2023; 13(20):11287.
https://doi.org/10.3390/app132011287
Chicago/Turabian Style
Achilli, Gabriele Maria, Cinzia Amici, Mihai Dragusanu, Massimiliano Gobbo, Silvia Logozzo, Monica Malvezzi, Monica Tiboni, and Maria Cristina Valigi.
2023. "Soft, Rigid, and Hybrid Robotic Exoskeletons for Hand Rehabilitation: Roadmap with Impairment-Oriented Rationale for Devices Design and Selection" Applied Sciences 13, no. 20: 11287.
https://doi.org/10.3390/app132011287
APA Style
Achilli, G. M., Amici, C., Dragusanu, M., Gobbo, M., Logozzo, S., Malvezzi, M., Tiboni, M., & Valigi, M. C.
(2023). Soft, Rigid, and Hybrid Robotic Exoskeletons for Hand Rehabilitation: Roadmap with Impairment-Oriented Rationale for Devices Design and Selection. Applied Sciences, 13(20), 11287.
https://doi.org/10.3390/app132011287