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首页> 外文期刊>Chronobiology international >Neuromuscular efficiency of the triceps surae in induced and voluntary contractions: Morning and evening evaluations
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Neuromuscular efficiency of the triceps surae in induced and voluntary contractions: Morning and evening evaluations

机译:肱三头肌在诱发性和自愿性收缩中的神经肌肉效率:早晚评估

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摘要

Variations in force and electromyographic (EMG) activities of skeletal muscles with the time-of-day have been previously described, but not for a postural muscle, submitted to daily postural and locomotor tasks. In this article, mechanical performances, EMGs, and the ratio between these parameters, i.e., the neuromuscular efficiency (NME), were measured on the triceps surae (TS) of eight subjects, two times each day, at 6:00 and 18:00 h. NME was evaluated under different experimental conditions (electrically induced contractions, reflex contractions, maximal and submaximal voluntary isometric contractions, and during a natural movement, a drop jump) to determine whether mechanisms, peripheral or central in origin, were responsible for the eventual changes in NME with time-of-day. To calculate NME in induced conditions (NMEind), a supramaximal electrical stimulus was applied to the tibial nerve, and the maximal M wave of TS (TS Mmax) and the amplitude of the twitch tension (Pt-Mmax) in response to this electrical stimulation were quantified. TS Mmax was significantly lower in the evening (mean gain value -10.7 +/- 5.5%, p < 0.05), whereas Pt-Mmax was not significantly modified. NMEind (Pt-Mmax/TS Mmax) was significantly higher in the evening (mean gain of 17.6 +/- 5.8%, p < 0.05), and this increase was necessarily peripheral in origin. Secondly, maximal tendon taps were applied to the Achilles tendon in order to quantify at the two times-of-day the reflexes in response to a mechanical stimulus. The maximal reflex, TS Tmax/Mmax (%), the peak amplitude of the twitch tension associated to this tendon jerk (Pt-Tmax) and the corresponding NME (NMEreflex = Pt-Tmax/TS Tmax/Mmax) were not affected by time-of-day, indicating that reflex excitability did not present daytime variations when tested under these conditions. Voluntary isometric contractions were required under maximal (MVC) and submaximal (25% MVC) conditions, and the corresponding torques and TS EMG were measured. MVC was higher in the evening (mean gain: 8.6 +/- 2.7%, p < 0.05) and TS EMGmax (normalized with regard to TS Mmax) also increased in the evening but not significantly; thus, NMEMVC was not modified. At 25% of MVC, TS EMG was significantly higher in the evening (mean gain of 23 +/- 13.9%, p < 0.05) and a trend for a lower NME25%MVC in the evening was observed, a result probably representative of a higher muscle fatigue state in the evening. Finally, to test the muscle capacities during a natural task, a NME index was calculated during a drop jump (DJ). The NMEDJ was defined as the ratio between jump height and mean amplitude of TS EMG (% of TS Mmax) between the drop and the jump. Both jump height and NMEDJ were significantly higher in the evening (mean gains of 10.9 +/- 4.5% and 15.7 +/- 7.4%, respectively, p < 0.05). In conclusion, daytime changes in the efficiency of postural muscles seem to depend on both peripheral and central mechanisms. According to the experimental conditions, NME of the postural muscle could increase, remain constant, or even decrease in the evening, and this result may reflect reverse effects of better contractile capacities and higher fatigue state.
机译:先前已经描述了骨骼肌的力量和肌电图(EMG)活动随一天的时间变化,但对于姿势肌肉却没有变化,但每天都要进行姿势和运动任务。在本文中,对八名受试者的肱三头肌(TS)进行机械性能,EMG和这些参数之间的比率(即神经肌肉效率(NME)),每天两次,分别在6:00和18: 00小时NME在不同的实验条件下进行了评估(电收缩,反射收缩,最大和次最大的自发等距收缩,以及自然运动过程中的跳跳),以确定起源于外周的还是中心的机制是导致带有时间的NME。为了计算诱发条件下的NME(NMEind),对胫神经施加了超最大电刺激,并且响应于该电刺激,TS的最大M波(TS Mmax)和抽搐张力的幅度(Pt-Mmax)被量化。晚上的TS Mmax显着降低(平均增益值-10.7 +/- 5.5%,p <0.05),而Pt-Mmax没有明显改变。晚上NMEind(Pt-Mmax / TS Mmax)明显更高(平均增幅为17.6 +/- 5.8%,p <0.05),并且这种增加必然是起源于周围的。其次,对跟腱施加最大的肌腱拍击声,以便量化在一天的两次响应机械刺激的反射。最大反射率TS Tmax / Mmax(%),与此肌腱抽动相关的抽搐张力的峰值幅度(Pt-Tmax)和相应的NME(NMEreflex = Pt-Tmax / TS Tmax / Mmax)不受时间影响在一天的一天中,表明在这些条件下进行测试时,反射兴奋性没有出现白天变化。在最大(MVC)和次最大(25%MVC)条件下需要自愿等距收缩,并测量相应的扭矩和TS EMG。晚上的MVC较高(平均增益:8.6 +/- 2.7%,p <0.05),TS EMGmax(相对于TS Mmax进行了标准化)在晚上也有所增加,但并不明显;因此,NMEMVC未被修改。在MVC的25%时,TS EMG在晚上显着升高(平均增幅23 +/- 13.9%,p <0.05),并且在晚上观察到NME25%MVC降低的趋势,这一结果可能代表了晚上肌肉疲劳状态较高。最后,为了测试自然任务期间的肌肉容量,在跌落跳跃(DJ)期间计算了NME指数。 NMEDJ定义为跳跃高度与跌落和跳跃之间的TS EMG平均幅度之间的比率(TS Mmax的百分比)。晚上的跳高和NMEDJ均明显更高(平均增幅分别为10.9 +/- 4.5%和15.7 +/- 7.4%,p <0.05)。总之,姿势肌肉效率的日间变化似乎取决于周围和中枢机制。根据实验条件,姿势肌肉的NME可以在晚上增加,保持恒定甚至下降,并且该结果可能反映出更好的收缩能力和更高的疲劳状态的反向影响。

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