运动性肌肉疲劳过程中大脑运动皮质区运动相关电位变化

    Changes of Movement-related Cortical Potentials in Motor Cortex Areas during Exercise-induced Muscle Fatigue

    • 摘要: 目的:观察健康成年受试者上肢指屈肌次最大随意等长收缩诱发运动性疲劳过程中大脑运动皮质区运动相关皮层电位(movement-related cortical potentials,MRCPs)的变化。方法:对疲劳组(n=15)和非疲劳组(n=13)受试者在进行200次的30%MVC的间断性等长握力收缩过程中的肌力、肌电以及脑电进行同步测量。将200次收缩分为4个模块,观察最大握力以及肌电均方根振幅(RMS)的变化。将200次收缩分为前、后2个大模块,分析在脑电信号中提取出的MRCPs电位。结果:研究表明,疲劳组受试者在指屈肌渐进性疲劳过程中最大握力(P<0.001)及其对应的肌电幅值(P<0.001)显著性下降,在4个运动模块中指深屈肌肌电的RMS幅值逐渐增加(P<0.01);运动皮质区的运动执行电位(motor potential,MP)和运动准备电位(readiness potential,RP)幅值随着疲劳发生发展显著增加。非疲劳组受试者以上指标没有显著性变化。与非疲劳组受试者相比,疲劳组受试者运动头皮运动区MRCPs有向头部前方和运动同侧移动的趋势。结论:在指屈肌次最大随意收缩诱发的渐进性疲劳过程中大脑运动皮质区运动相关皮层电位激活水平增高,激活面积弥散,且有向头部前方和运动同侧移动的特点,这可能是中枢为了弥补肌肉力量下降动员更多肌纤维而采用的中枢策略。另外,运动执行电位与肌肉疲劳密切相关,而运动前准备电位受肌肉疲劳影响较小。

       

      Abstract: Objective:To examine the changes of movement-related cortical potentials(MRCPs)in motor cortex areas induced by submaximal voluntary isometric fatiguing contractions of flexor digitorum.Methods:15subjects in fatigue group and 13 subjects in non-fatigue group performed 200 repeated 30% MVCs isometric contractions of flexor digitorum,accompanying by measurements of muscle force,surface electromyography(sEMG),and electroencephalography(EEG).The 200 contractions were divided by 4blocks,to observe the changes of maximal handgrip force and RMS of sEMG.And the 200 contractions were divided by 2large blocks,to analyze the MRCPs distracted from EEG.Results:Subjects from the fatigue group during muscle fatigue showed significant decrease of the maximal handgrip force(P<0.001)and RMS of sEMG(P<0.001),accompanying the significant increase of average RMS over 4 blocks.With the development of muscle fatigue,the amplitudes of motor potential(MP)and readiness potential(RP)significantly increased.However,these measurements did not present significant changes.In addition,compared with the non-fatigue group,the MRCPs site in the fatigue group presented the shift to anterior and ipsilateral brain areas.Conclusion:During the muscle fatigue induced by submaximal voluntary isometric contractions of flexor digitorum,the activation strength and activation areas of MRCPs in brain motor cortex areas increases,and the activation site of MRCPs presents a tendency of shift to anterior and ipsilateral brain areas,suggesting a central strategy to compensate the loss of force.In addition,muscle fatigue has more effects on the MP than the RP.

       

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