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经皮电刺激诱发本体感觉错觉的新方法。

A new approach of inducing proprioceptive illusion by transcutaneous electrical stimulation.

机构信息

Department of Electrical and Computer Engineering, Texas A&M University, College Station, TX, 77843, USA.

出版信息

J Neuroeng Rehabil. 2021 May 3;18(1):73. doi: 10.1186/s12984-021-00870-y.

Abstract

BACKGROUND

Neurotraumas or neurodegenerative diseases often result in proprioceptive deficits, which makes it challenging for the nervous system to adapt to the compromised sensorimotor conditions. Also, in human machine interactions, such as prosthesis control and teleoperation, proprioceptive mismatch limits accuracy and intuitiveness of controlling active joints in robotic agents. To address these proprioceptive deficits, several invasive and non-invasive approaches like vibration, electrical nerve stimulation, and skin stretch have been introduced. However, proprioceptive modulation is still challenging as the current solutions have limitations in terms of effectiveness, usability, and consistency. In this paper, we propose a new way of modulating proprioception using transcutaneous electrical stimulation. We hypothesized that transcutaneous electrical stimulation on elbow flexor muscles will induce illusion of elbow joint extension.

METHOD

Eight healthy human subjects participated in the study to test the hypothesis. Transcutaneous electrodes were placed on different locations targeting elbow flexor muscles on human subjects and experiments were conducted to identify the best locations for electrode placement, and best electrical stimulation parameters, to maximize induced proprioceptive effect. Arm matching experiments and Pinocchio illusion test were performed for quantitative and qualitative analysis of the observed effects. One-way repeated ANOVA test was performed on the data collected in arm matching experiment for statistical analysis.

RESULTS

We identified the best location for transcutaneous electrodes to induce the proprioceptive illusion, as one electrode on the muscle belly of biceps brachii short head and the other on the distal myotendinous junction of brachioradialis. The results for arm-matching and Pinocchio illusion tests showed that transcutaneous electrical stimulation using identified electrode location and electrical stimulation parameters evoked the illusion of elbow joint extension for all eight subjects, which supports our hypothesis. On average, subjects reported 6.81° angular illusion of elbow joint extension in arm-matching tests and nose elongated to 1.78 × height in Pinocchio illusion test.

CONCLUSIONS

Transcutaneous electrical stimulation, applied between the the synergistic elbow flexor muscles, consistently modulated elbow joint proprioception with the illusion of elbow joint extension, which has immense potential to be translated into various real-world applications, including neuroprosthesis, rehabilitation, teleoperation, mixed reality, and etc.

摘要

背景

神经创伤或神经退行性疾病常导致本体感觉缺失,这使得神经系统难以适应受损的感觉运动条件。此外,在人机交互中,如假肢控制和遥操作,本体感觉不匹配限制了机器人主动关节控制的准确性和直观性。为了解决这些本体感觉缺失的问题,已经提出了几种侵入性和非侵入性的方法,如振动、电神经刺激和皮肤拉伸。然而,由于当前的解决方案在有效性、可用性和一致性方面存在局限性,本体感觉调制仍然具有挑战性。在本文中,我们提出了一种使用经皮电刺激调制本体感觉的新方法。我们假设,对肘屈肌进行经皮电刺激将引起肘关节伸展的错觉。

方法

八名健康的人类受试者参与了这项研究来验证假设。将经皮电极放置在人体肘屈肌的不同位置上,并进行实验以确定电极放置的最佳位置和最佳电刺激参数,以最大限度地提高诱导的本体感觉效果。进行手臂匹配实验和 Pinocchio 错觉测试,对观察到的效果进行定量和定性分析。对手臂匹配实验中收集的数据进行单向重复方差分析,以进行统计分析。

结果

我们确定了经皮电极的最佳位置,以诱导本体感觉错觉,一个电极位于肱二头肌短头的肌腹上,另一个电极位于肱桡肌的远端肌-腱连接处。手臂匹配和 Pinocchio 错觉测试的结果表明,使用确定的电极位置和电刺激参数进行经皮电刺激,所有 8 名受试者都能诱发肘关节伸展的错觉,这支持了我们的假设。平均而言,受试者在手臂匹配测试中报告了 6.81°的肘关节伸展角度错觉,在 Pinocchio 错觉测试中鼻子伸长到 1.78×高度。

结论

经皮电刺激应用于协同肘屈肌之间,可一致地调节肘关节本体感觉,产生肘关节伸展的错觉,这具有广泛的潜力转化为各种实际应用,包括神经假体、康复、遥操作、混合现实等。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1999/8094608/f7e8fe1693c2/12984_2021_870_Fig1_HTML.jpg

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