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人体上肢肌肉激活和肌肉间协调性的电触觉调制

Electro-tactile modulation of muscle activation and intermuscular coordination in the human upper extremity.

作者信息

Doan Hy, Tavasoli Shahabedin, Seo Gang, Park Hyung-Soon, Park Hangue, Roh Jinsook

机构信息

Department of Biomedical Engineering, University of Houston, 3517 Cullen Blvd, SERC Room 2011, Houston, TX, 77204-5060, USA.

Department of Neurology and Neurological Sciences, Stanford University, Stanford, CA, USA.

出版信息

Sci Rep. 2025 Jan 20;15(1):2559. doi: 10.1038/s41598-025-86342-y.

Abstract

Electro-tactile stimulation (ETS) can be a promising aid in augmenting sensation for those with sensory deficits. Although applications of ETS have been explored, the impact of ETS on the underlying strategies of neuromuscular coordination remains largely unexplored. We investigated how ETS, alone or in the presence of mechano-tactile environment change, modulated the electromyogram (EMG) of individual muscles during force control and how the stimulation modulated the attributes of intermuscular coordination, assessed by muscle synergy analysis, in human upper extremities. ETS was applied to either the thumb or middle fingertip which had greater contact with the handle, grasped by the participant, and supported a target force match. EMGs were recorded from 11 arm muscles of 15 healthy participants during three-dimensional exploratory force control. EMGs were modeled as the linear combination of muscle co-activation patterns (the composition of muscle synergies) and their activation profiles. Individual arm muscle activation changed depending on the ETS location on the finger. The composition of muscle synergies was conserved, but synergy activation coefficients altered reflecting the effects of electro-tactile modulation. The mechano-tactile modulation tended to decrease the effects of ETS on the individual muscle activation and synergy activation magnitude. This study provides insights into sensory augmentation and its impact on intermuscular coordination in the human upper extremity.

摘要

电触觉刺激(ETS)对于增强感觉功能有缺陷者的感觉可能是一种很有前景的辅助手段。尽管已经对ETS的应用进行了探索,但ETS对神经肌肉协调的潜在策略的影响在很大程度上仍未得到研究。我们研究了ETS单独作用或在机械触觉环境变化的情况下,如何在力控制过程中调节单个肌肉的肌电图(EMG),以及这种刺激如何通过肌肉协同分析评估来调节人类上肢肌肉间协调的属性。ETS应用于与参与者握持的手柄有更大接触的拇指或中指指尖,并支持目标力匹配。在三维探索性力控制过程中,记录了15名健康参与者11块手臂肌肉的肌电图。肌电图被建模为肌肉共同激活模式(肌肉协同的组成)及其激活曲线的线性组合。单个肌肉的激活根据手指上ETS的位置而变化。肌肉协同的组成保持不变,但协同激活系数发生改变,反映了电触觉调制的影响。机械触觉调制倾向于降低ETS对单个肌肉激活和协同激活幅度的影响。本研究为人类上肢的感觉增强及其对肌肉间协调的影响提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1aec/11756415/d8d041c5b3b3/41598_2025_86342_Fig1_HTML.jpg

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