运动控制性能相关的β带脑电图-肌电图相干性调制在全身和局部肌肉运动引起的疲劳之间的差异。

IF 2.7 3区 医学 Q2 PHYSIOLOGY
European Journal of Applied Physiology Pub Date : 2025-07-01 Epub Date: 2025-02-05 DOI:10.1007/s00421-025-05714-4
Changxiao Yu, Jianglong Zhan, Linfeng Xu, Junhong Zhou, Weijie Fu
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引用次数: 0

摘要

目的:运动性疲劳可以降低运动控制能力,增加运动损伤的风险,这与皮质神经元通路内的功能耦合有关。然而,由全身和局部肌肉运动引起的疲劳引起的功能耦合的差异尚不清楚。本研究旨在探讨运动疲劳对不同疲劳方案下优势下肢感觉运动皮层(SM1)与肌肉之间β波段(16-30 Hz)功能耦合的影响。方法:随机招募24名健康男性受试者,分别以个性化恒速跑步作为一般肌肉运动(GME)和最大等速踝关节跖背屈曲作为局部肌肉运动(LME)诱导疲劳。每组间隔7天。SM1的脑电图(EEG)信号(如FC1、FCz和Cz)和4块肌肉(比目鱼肌、SOL;内侧腓肠肌,MG;后来腓肠肌和LG;同时记录踝关节跖背屈伸任务疲劳前后的胫前肌(TA),并将其用于β带相干性分析。结果:GME诱导疲劳后,脑电图-表面肌电信号相干性明显大于LME诱导(P)。结论:GME诱导的疲劳表明优势下肢SM1与肌肉之间的β带功能耦合增强,这与更高的运动控制性能有关。相反,LME引起的疲劳会减弱功能耦合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motor control performance-related modulation of beta-band EEG-sEMG coherence differs between general and local muscular exercise-induced fatigue.

Purpose: Exercise-induced fatigue can reduce motor control performance and increase the risk of sporting injuries, which are related to functional coupling within the corticomotoneuronal pathway. However, the differences in functional coupling caused by general and local muscular exercise-induced fatigue are unknown. This study aimed to investigate the effects of exercise-induced fatigue on the beta-band (16-30 Hz) functional coupling between the sensorimotor cortex (SM1) and muscles of the dominant lower limb under different fatigue protocols.

Methods: Twenty-four healthy male participants were recruited to participate in randomized sessions of personalized constant speed running as general muscular exercise (GME) and maximum isokinetic ankle plantar-dorsiflexion as local muscular exercise (LME) to induce fatigue. These sessions were separated by 7 days. The electroencephalogram (EEG) signals of SM1 (e.g., FC1, FCz, and Cz) and surface electromyography signals (sEMG) of four muscles (soleus, SOL; medial gastrocnemius, MG; later gastrocnemius, and LG; tibialis anterior, TA) were simultaneously recorded before and after fatigue during the ankle plantar-dorsiflexion task, which were used for beta-band coherence analyses.

Results: Following fatigue induced by GME, the EEG-sEMG coherence was significantly greater than that induced by LME (P < 0.04). Compared to pre-fatigue state, the coherence of FC1-SOL, FCz-SOL, and Cz-SOL increased significantly after general fatigue, while these coherences decreased significantly after local fatigue.

Conclusion: Fatigue induced by GME indicates an enhancement in beta-band functional coupling between the SM1 and muscles of the dominant lower limb, which is related to higher motor control performance. In contrast, fatigue induced by LME diminishes the functional coupling.

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来源期刊
CiteScore
6.00
自引率
6.70%
发文量
227
审稿时长
3 months
期刊介绍: The European Journal of Applied Physiology (EJAP) aims to promote mechanistic advances in human integrative and translational physiology. Physiology is viewed broadly, having overlapping context with related disciplines such as biomechanics, biochemistry, endocrinology, ergonomics, immunology, motor control, and nutrition. EJAP welcomes studies dealing with physical exercise, training and performance. Studies addressing physiological mechanisms are preferred over descriptive studies. Papers dealing with animal models or pathophysiological conditions are not excluded from consideration, but must be clearly relevant to human physiology.
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