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Assistive technology and robotic control using motor cortex ensemble-based neural interface systems in humans with tetraplegia

机译:四肢瘫痪患者使用基于运动皮质集合神经网络系统的辅助技术和机器人控制

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摘要

This review describes the rationale, early stage development, and initial human application of neural interface systems (NISs) for humans with paralysis. NISs are emerging medical devices designed to allow persons with paralysis to operate assistive technologies or to reanimate muscles based upon a command signal that is obtained directly from the brain. Such systems require the development of sensors to detect brain signals, decoders to transform neural activity signals into a useful command, and an interface for the user. We review initial pilot trial results of an NIS that is based on an intracortical microelectrode sensor that derives control signals from the motor cortex. We review recent findings showing, first, that neurons engaged by movement intentions persist in motor cortex years after injury or disease to the motor system, and second, that signals derived from motor cortex can be used by persons with paralysis to operate a range of devices. We suggest that, with further development, this form of NIS holds promise as a useful new neurotechnology for those with limited motor function or communication. We also discuss the additional potential for neural sensors to be used in the diagnosis and management of various neurological conditions and as a new way to learn about human brain function.
机译:这篇综述描述了神经界面系统(NISs)为瘫痪者的基本原理,早期开发和最初的人类应用。 NIS是新兴的医疗设备,旨在使瘫痪者操作辅助技术或根据直接从大脑获得的命令信号使肌肉恢复活力。这样的系统需要开发传感器以检测大脑信号,将神经活动信号转换为有用命令的解码器以及用户界面。我们回顾了基于皮层内微电极传感器的NIS的初步试验结果,该传感器从运动皮层获得控制信号。我们回顾了最近的发现,这些发现首先表明,运动意图引起的神经元在运动系统受损或疾病发生后的几年内仍存在于运动皮层中,其次,瘫痪患者可以使用源自运动皮层的信号来操作一系列设备。我们建议,随着进一步的发展,这种形式的NIS有望成为一种对运动功能或沟通受限的人有用的新型神经技术。我们还将讨论神经传感器在各种神经系统疾病的诊断和管理中以及作为了解人脑功能的新方法所使用的其他潜力。

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