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对非残疾受试者前臂经皮电刺激诱发感觉的评估。

Evaluation of sensation evoked by electrocutaneous stimulation on forearm in nondisabled subjects.

作者信息

Geng Bo, Yoshida Ken, Petrini Laura, Jensen Winnie

机构信息

Aalborg University, Center for Sensory-Motor Interaction (SMI), Department of Health Science and Technology, Fredrik Bajersvej 7D, 9220 Aalborg, Denmark.

出版信息

J Rehabil Res Dev. 2012;49(2):297-308. doi: 10.1682/jrrd.2010.09.0187.

Abstract

Few studies are available in the literature on the sensations artificially created by dual-channel electrocutaneous stimulation. This study assessed the effect of a set of selected stimulation parameters on the sensations evoked by single- or dual-channel electrocutaneous stimulation. The investigated parameters included the stimulation site, the number of pulses, the number of stimulating channels (single- vs dual-channel), and the interleaved time between two channels. The modality, quality, location, and magnitude of the sensations were evaluated when the stimulations were applied on the forearm skin in 16 nondisabled subjects. Tactile perception was found to be induced more easily on the median and ulnar aspect than the dorsal and radial aspect of the forearm. Stimulation site significantly affected the magnitude of the sensation (p < 0.01). Dual-channel stimulation significantly increased the sensation magnitude (p < 0.05) only when the two electrodes were positioned closely. Moreover, a higher number of pulses evoked a movement perception more frequently and the interleaved time showed no significant effect on the magnitude of the sensation. The findings are expected to be useful for sensory substitution and augmentation applications. The results may also help improve users' acceptance of hand prostheses.

摘要

关于双通道皮肤电刺激所产生的人为感觉,文献中相关研究较少。本研究评估了一组选定的刺激参数对单通道或双通道皮肤电刺激所诱发感觉的影响。所研究的参数包括刺激部位、脉冲数量、刺激通道数量(单通道与双通道)以及两个通道之间的交错时间。在16名非残疾受试者的前臂皮肤上施加刺激时,对感觉的形式、性质、位置和强度进行了评估。结果发现,在前臂的正中面和尺侧面比背侧面和桡侧面更容易诱发触觉感知。刺激部位对感觉强度有显著影响(p < 0.01)。仅当两个电极紧密放置时,双通道刺激才会显著增加感觉强度(p < 0.05)。此外,较高的脉冲数量更频繁地诱发运动感知,并且交错时间对感觉强度没有显著影响。这些发现有望用于感觉替代和增强应用。研究结果也可能有助于提高用户对手部假肢的接受度。

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