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手腕姿势会不可预测地影响通过置于手腕的电极进行的靶向经皮电神经刺激的感知。

Wrist posture unpredictably affects perception of targeted transcutaneous electrical nerve stimulation with wrist-placed electrodes.

作者信息

Thomas Neha, Osborn Luke, Moran Courtney, Fifer Matthew, Christie Breanne

机构信息

Research and Exploratory Development Department, Johns Hopkins University Applied Physics Laboratory, Laurel, MD, United States.

出版信息

Front Neurosci. 2024 Dec 9;18:1490828. doi: 10.3389/fnins.2024.1490828. eCollection 2024.

Abstract

OBJECTIVE

Targeted transcutaneous electrical nerve stimulation (tTENS) is a non-invasive neural stimulation technique that involves activating sensory nerve fibers to elicit tactile sensations in a distal, or referred, location. Though tTENS is a promising approach for delivering haptic feedback in virtual reality or for use by those with somatosensory deficits, it was not known how the perception of tTENS might be influenced by changing wrist position during sensorimotor tasks.

APPROACH

We worked with 12 able-bodied individuals and delivered tTENS by placing electrodes on the wrist, thus targeting the ulnar, median, and radial nerves, and eliciting tactile sensations in the hand. We recorded perceptual data across three wrist postures: neutral, 45° extension, and 45° flexion. For each posture, the participants drew where they perceived the elicited percepts on a map of the hand. They verbally reported the quality of the percepts in their own words. We also varied the pulse amplitude and width of the stimulation to generate a strength-duration curve, from which we extracted the rheobase current and chronaxie time. Linear mixed models were run on the slope and intercept of the linear fit between pulse width and pulse amplitude to investigate effects of gender, posture, and electrode placement.

MAIN RESULTS

As wrist posture changed, sensation quality was modulated for half of the participants, and percept location changed for 11/12 participants. The rheobase, chronaxie, and percept sizes were influenced by wrist posture, but the direction of these changes varied by participant and therefore the effect was not systematic. The statistical models indicated interactions between posture and electrode placement, as well as an effect of gender.

SIGNIFICANCE

If using tTENS with electrodes placed on the wrist to convey haptic feedback during sensorimotor tasks, in which wrist posture will likely change, it may be important to characterize perception on an individual basis.

摘要

目的

靶向经皮电神经刺激(tTENS)是一种非侵入性神经刺激技术,它通过激活感觉神经纤维,在远端或牵涉部位引发触觉。尽管tTENS是在虚拟现实中提供触觉反馈或供体感缺陷者使用的一种很有前景的方法,但尚不清楚在感觉运动任务中改变手腕位置如何影响对tTENS的感知。

方法

我们与12名身体健全的个体合作,通过将电极置于手腕上来进行tTENS,从而靶向尺神经、正中神经和桡神经,并在手内引发触觉。我们记录了三种手腕姿势下的感知数据:中立位、45°伸展和45°屈曲。对于每种姿势,参与者在手部地图上画出他们感知到诱发感觉的位置。他们用自己的语言口头报告感觉的性质。我们还改变了刺激的脉冲幅度和宽度以生成强度-时间曲线,从中提取基强度电流和时值。对脉冲宽度和脉冲幅度之间线性拟合的斜率和截距运行线性混合模型,以研究性别、姿势和电极放置的影响。

主要结果

随着手腕姿势的改变,一半参与者的感觉质量受到调节,11/12的参与者感觉位置发生改变。基强度、时值和感觉大小受手腕姿势影响,但这些变化的方向因参与者而异,因此效果不具有系统性。统计模型表明姿势和电极放置之间存在相互作用,以及性别效应。

意义

如果在感觉运动任务期间使用置于手腕上的电极进行tTENS以传达触觉反馈,而在此类任务中手腕姿势可能会改变,那么基于个体特征来描述感知可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9055/11667115/8eb1d25373a2/fnins-18-1490828-g001.jpg

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