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Activities on PNS neural interfaces for the control of hand prostheses

机译:在PNS神经接口上控制手部假体的活动

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The development of interfaces linking the human nervous system with artificial devices is an important area of research. Several groups are working on the development of devices able to restore sensory-motor function in subjects affected by neurological disorders, injuries or amputations. Neural electrodes implanted in peripheral nervous system, and in particular intrafascicular electrodes, seem to be a promising approach for the control of hand prosthesis thanks to the possibility to selectively access motor and sensory fibers for decoding motor commands and delivering sensory feedback. In this paper, activities on the use of PNS interfaces for the control of hand prosthesis are presented. In particular, the design and feasibility study of a self-opening neural interface is presented together with the decoding of ENG signals in one amputee to control a dexterous hand prosthesis.
机译:连接人的神经系统和人造设备的接口的开发是重要的研究领域。几个小组正在研究能够恢复受神经系统疾病,损伤或截肢影响的受试者的感觉运动功能的设备。植入周围神经系统的神经电极,尤其是束内电极,似乎是控制手部假体的一种有前途的方法,这是由于可以选择性地进入运动和感觉纤维来解码运动命令并传递感觉反馈,因此是一种很有前途的方法。在本文中,介绍了使用PNS接口控制手部假体的活动。特别是,提出了一种自动打开神经接口的设计和可行性研究,以及在一个截肢者中对ENG信号进行解码以控制灵巧的手部假体的设计和可行性研究。

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