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An Ultra-Compact Low-Powered Closed-Loop Device for Control of the Neuromuscular System

机译:用于控制神经肌肉系统的超紧凑型低功率闭环装置

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Neuroprosthetic interfaces require light-weighted and power-optimized systems that combine acquisition and stimulation together with a computational unit capable to perform on-line analysis for closed-loop control. Here, we present an ultra-compact and low-power system able to acquire from 32 channels and stimulate independently using both current and voltage. The system has been validated in vivo for rats in the recording of spontaneous and evoked potentials and peripheral nerve stimulation, and it was tested to reproduce the muscular activity involved in gait. This device has potential application in long-term clinical therapies for the restoration of limb control and it can become a development platform for closed loop algorithms in neuromuscular interfaces.
机译:神经假体接口需要轻量级且功率优化的系统,该系统将采集和刺激与能够执行在线分析以进行闭环控制的计算单元结合在一起。在这里,我们介绍了一种超紧凑,低功耗的系统,该系统能够从32个通道采集信号,并使用电流和电压独立激励。该系统已在大鼠中自发和诱发电位的记录以及周围神经刺激的体内验证中,并经过测试可重现步态中涉及的肌肉活动。该设备在恢复肢体控制的长期临床治疗中具有潜在的应用,并且可以成为神经肌肉接口中闭环算法的开发平台。

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