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等长膝关节收缩过程中,训练状态对主动肌与拮抗肌β波段皮质-肌肉相干性的影响。

Effect of training status on beta-range corticomuscular coherence in agonist vs. antagonist muscles during isometric knee contractions.

作者信息

Dal Maso Fabien, Longcamp Marieke, Cremoux Sylvain, Amarantini David

机构信息

Département de Kinésiologie, Université de Montréal, 2100 Boulevard Édouard-Montpetit, Montréal, QC, H3C 3J7, Canada.

LNC, CNRS-Aix-Marseille Université, 3 Place Victor-Hugo, 13331, Marseille Cedex 3, France.

出版信息

Exp Brain Res. 2017 Oct;235(10):3023-3031. doi: 10.1007/s00221-017-5035-z. Epub 2017 Jul 19.

Abstract

Antagonist muscle co-activation is thought to be partially regulated by cortical influences, but direct motor cortex involvement is not fully understood. Corticomuscular coherence (CMC) measures direct functional coupling of the motor cortex and muscles. As antagonist co-activation differs according to training status, comparison of CMC in agonist and antagonist muscles and in strength-trained and endurance-trained individuals may provide in-depth knowledge of cortical implication in antagonist muscle co-activation. Electroencephalographic and electromyographic signals were recorded, while 10 strength-trained and 11 endurance-trained participants performed isometric knee contractions in flexion and extension at various torque levels. CMC magnitude in 13-21 and 21-31 Hz frequency bands was quantified by CMC analysis between Cz electroencephalographic electrode activity and all electromyographic signals. CMC was significant in both 13-21 and 21-31 Hz frequency bands in flexor and extensor muscles regardless of participant group, torque level, and direction of contraction. CMC magnitude decreased more in antagonist than in agonist muscles as torque level increased. Finally, CMC magnitude was higher in strength-trained than in endurance-trained participants. These findings provide experimental evidence that the motor cortex directly regulates both agonist and antagonist muscles. Nevertheless, the mechanisms underlying muscle activation may be specific to their function. Between-group modulation of corticomuscular coherence may result from training-induced adaptation, re-emphasizing that corticomuscular coherence analysis may be efficient in characterizing corticospinal adaptations after long-term muscle specialization.

摘要

拮抗肌共同激活被认为部分受皮质影响调节,但运动皮质的直接参与情况尚未完全明确。皮质肌电相干性(CMC)测量运动皮质与肌肉之间的直接功能耦合。由于拮抗肌共同激活因训练状态而异,比较主动肌和拮抗肌以及力量训练者和耐力训练者的CMC,可能会深入了解皮质在拮抗肌共同激活中的作用。在10名力量训练者和11名耐力训练者以不同扭矩水平进行等长屈膝和伸膝收缩时,记录脑电图和肌电图信号。通过对Cz脑电图电极活动与所有肌电图信号之间进行CMC分析,量化13 - 21Hz和21 - 31Hz频段的CMC幅度。无论参与者组别、扭矩水平和收缩方向如何,屈肌和伸肌在13 - 21Hz和21 - 31Hz频段的CMC均显著。随着扭矩水平增加,拮抗肌的CMC幅度比主动肌下降得更多。最后,力量训练者的CMC幅度高于耐力训练者。这些发现提供了实验证据,表明运动皮质直接调节主动肌和拮抗肌。然而,肌肉激活的潜在机制可能因其功能而异。皮质肌电相干性的组间调节可能是训练诱导适应的结果,再次强调皮质肌电相干性分析在表征长期肌肉专项化后皮质脊髓适应方面可能是有效的。

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