神经假体
神经调节
机器人学
康复机器人
康复
神经康复
物理医学与康复
人工智能
计算机科学
人口
功能性电刺激
医学
人机交互
心理学
神经科学
机器人
刺激
环境卫生
作者
Nicolas Hankov,Miroslav Caban,Robin Demesmaeker,Margaux Roulet,Salif Komi,Michele Xiloyannis,Anne Gehrig,Camille Varescon,Martina R. Spiess,Serena Maggioni,Chiara Basla,Gleb Koginov,Florian L. Haufe,Marina D’Ercole,Cathal Harte,Sergio Daniel Hernandez-Charpak,Aurélie Paley,Manon Tschopp,Natacha Herrmann,Nadine Intering
出处
期刊:Science robotics
[American Association for the Advancement of Science]
日期:2025-03-12
卷期号:10 (100)
标识
DOI:10.1126/scirobotics.adn5564
摘要
Rehabilitation robotics aims to promote activity-dependent reorganization of the nervous system. However, people with paralysis cannot generate sufficient activity during robot-assisted rehabilitation and, consequently, do not benefit from these therapies. Here, we developed an implantable spinal cord neuroprosthesis operating in a closed loop to promote robust activity during walking and cycling assisted by robotic devices. This neuroprosthesis is device agnostic and designed for seamless implementation by nonexpert users. Preliminary evaluations in participants with paralysis showed that the neuroprosthesis enabled well-organized patterns of muscle activity during robot-assisted walking and cycling. A proof-of-concept study suggested that robot-assisted rehabilitation augmented by the neuroprosthesis promoted sustained neurological improvements. Moreover, the neuroprosthesis augmented recreational walking and cycling activities outdoors. Future clinical trials will have to confirm these findings in a broader population.
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