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用于闭环神经假体的周围神经电极的最新进展

Update on Peripheral Nerve Electrodes for Closed-Loop Neuroprosthetics.

作者信息

Rijnbeek Emil H, Eleveld Nick, Olthuis Wouter

机构信息

BIOS Lab-on-a-Chip Group, MESA+ Institute for Nanotechnology, MIRA Institute for Biomedical Technology and Technical Medicine, University of Twente, Enschede, Netherlands.

出版信息

Front Neurosci. 2018 May 28;12:350. doi: 10.3389/fnins.2018.00350. eCollection 2018.

Abstract

In this paper various types of electrodes for stimulation and recording activity of peripheral nerves for the control of neuroprosthetic limbs are reviewed. First, an overview of interface devices for (feedback-) controlled movement of a prosthetic device is given, after which the focus is on peripheral nervous system (PNS) electrodes. Important electrode properties, i.e., longevity and spatial resolution, are defined based upon the usability for neuroprostheses. The cuff electrode, longitudinal intrafascicular electrodes (LIFE), transverse intrafascicular multichannel electrode (TIME), Utah slanted electrode array (USEA), and the regenerative electrode are discussed and assessed on their longevity and spatial resolution. The cuff electrode seems to be a promising electrode for the control of neuroprostheses in the near future, because it shows the best longevity and good spatial resolution and it has been used on human subjects in multiple studies. The other electrodes may be promising in the future, but further research on their longevity and spatial resolution is needed. A more quantitatively uniform study protocol used for all electrodes would allow for a proper comparison of recording and stimulation performance. For example, the discussed electrodes could be compared in a large study, using one uniform comparison protocol.

摘要

本文综述了用于控制神经假体肢体的外周神经刺激和记录活动的各类电极。首先,给出了用于(反馈)控制假体装置运动的接口设备概述,之后重点关注外周神经系统(PNS)电极。基于神经假体的可用性定义了重要的电极特性,即寿命和空间分辨率。讨论并评估了袖带电极、纵向束内电极(LIFE)、横向束内多通道电极(TIME)、犹他倾斜电极阵列(USEA)和再生电极的寿命和空间分辨率。袖带电极似乎是在不久的将来控制神经假体的一种有前景的电极,因为它显示出最佳的寿命和良好的空间分辨率,并且已在多项研究中应用于人体受试者。其他电极未来可能有前景,但需要对其寿命和空间分辨率进行进一步研究。用于所有电极的更定量统一的研究方案将允许对记录和刺激性能进行适当比较。例如,可以在一项大型研究中使用一个统一的比较方案对所讨论的电极进行比较。

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