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首页> 外文期刊>Journal of applied physiology >Muscle fatigue-induced enhancement of corticomuscular coherence following sustained submaximal isometric contraction of the tibialis anterior muscle.
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Muscle fatigue-induced enhancement of corticomuscular coherence following sustained submaximal isometric contraction of the tibialis anterior muscle.

机译:胫骨前肌持续等最大收缩后,肌肉疲劳引起的皮质肌连贯性增强。

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Oscillatory activity of the sensorimotor cortex shows coherence with muscle activity within the 15- to 35-Hz frequency band (beta-band) during weak to moderate sustained isometric contraction. We aimed to examine the acute changes in this corticomuscular coupling due to muscle fatigue and its effect on the steadiness of the exerted force. We quantified the coherence between the electroencephalogram (EEG) recorded over the sensorimotor cortex and the rectified surface electromyogram (EMG) of the tibialis anterior muscle as well as the coefficient of variance of the dorsiflexion force (Force(CV)) and sum of the auto-power spectral density function of the force within the beta-band (Force(beta-PSD)) during 30% of maximal voluntary contraction (MVC) for 60 s before (prefatiguing task) and after (postfatiguing task) muscle fatigue induced by sustained isometric contraction at 50% of MVC until exhaustion in seven healthy male subjects. The magnitude of the EEG-EMG coherence increased in the postfatiguing task in six of seven subjects. The maximal peak of EEG-EMG coherence stayed within the beta-band in both pre- and postfatiguing tasks. Interestingly, two subjects, who had no significant EEG-EMG coherence in the prefatiguing task, showed significant coherence in the postfatiguing task. Additionally, Force(CV) and Force(beta-PSD) significantly increased after muscle fatigue. These data suggest that when muscle fatigue develops, the central nervous system enhances oscillatory muscular activity in the beta-band stronger coupled with the sensorimotor cortex activity accomplishing the sustained isometric contraction at lower performance levels.
机译:在弱至中度持续的等轴测收缩期间,感觉运动皮层的振荡活动在15至35 Hz频带(β频带)内显示与肌肉活动的连贯性。我们的目的是检查由于肌肉疲劳而引起的这种皮质-肌肉耦合的剧烈变化及其对施加力的稳定性的影响。我们量化了感觉运动皮层上记录的脑电图(EEG)和胫骨前肌的矫正表面肌电图(EMG)之间的相干性以及背屈力的方差系数(Force(CV))和自动总和疲劳引起的疲劳前(疲劳前)和疲劳后(疲劳后)后60 s内,最大主动收缩(MVC)的30%期间,β带(力(β-PSD))内的力的功率谱密度函数在七名健康男性受试者中,在MVC达到50%之前等距收缩。在疲劳后的任务中,七名受试者中有六名的脑电图-脑电图相干性强度增加。在疲劳前和疲劳后的工作中,EEG-EMG相干性的最大峰值均保持在β波段内。有趣的是,在疲劳前任务中没有明显的EEG-EMG一致性的两个受试者在疲劳后任务中显示出显着的一致性。此外,肌肉疲劳后,力(CV)和力(β-PSD)显着增加。这些数据表明,当肌肉疲劳发展时,中枢神经系统会增强β带中的振荡性肌肉活动,并增强感觉运动皮层活动,从而在较低的性能水平上实现持续的等距收缩。

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