首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Elastic band exercise induces greater neuromuscular fatigue than phasic isometric contractions
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Elastic band exercise induces greater neuromuscular fatigue than phasic isometric contractions

机译:弹性带锻炼诱导比相位数等距收缩更大的神经肌肉疲劳

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摘要

This study investigated the neuromuscular fatigue following an elastic band exercise (EB) of the plantar flexors, compared to an intermittent phasic isometric exercise (ISO). Eleven young healthy males (age: 24.2 +/- 3.7) took part in the study, consisting of one experimental session involving two 5-min fatiguing protocols separated by 20 min rest and performed randomly. Both exercises were performed at maximal motor output of the plantar flexor muscles, EMG being used as a feedback signal. Neuromuscular fatigue was assessed through changes in maximal voluntary contraction (MVC) and in evoked responses of soleus and gastrocnemii muscles to posterior tibial nerve stimulation (H-reflex, M-wave, V-wave). Both conditions induced significant decrease in MVC force, but to a greater extent after EB (-20.0 +/- 5.1%, P < 0.001) than after ISO (-12.3 +/- 4.6%, P= 0.037). While no effect was observed in M-wave amplitude after both exercises, EB resulted in greater decrease of normalized H-reflexes compared to isometric condition. Normalized V-wave significantly decreased only after EB. As a conclusion, the greater fatigability found after EB as compared to ISO was underlain by muscular as well as nervous factors. This higher impact was attributed to the dynamic nature of elastic band exercise as compared to isometric contractions.
机译:该研究对跖屈的弹性带运动(EB)进行了神经肌肉疲劳,与间歇阶段的等距运动(ISO)相比。 11人年轻健康的男性(年龄:24.2 +/- 3.7)参加了该研究,该研究包括一个实验会议,涉及两个5分钟的疲劳方案,分隔20分钟休息,随机进行。在Purtorar屈肌肌肉的最大电机输出处进行两次练习,EMG被用作反馈信号。通过最大自愿收缩(MVC)的变化评估神经肌肉疲劳,并在肠道神经肌肉中诱发的胫骨神经刺激(H-反射,M波,V波)诱发反应。这两种条件诱导MVC力的显着降低,但在EB(-20.0 +/- 5.1%,P <0.001)的程度上比ISO之后的更大程度(-12.3 +/- 4.6%,P = 0.037)。虽然在练习后,在M波振幅中没有观察到效果,与等距条件相比,EB导致标准化的H-反射导致了更大的降低。 EB后,归一化V波才显着降低。作为结论,与ISO相比,EB后发现的更大疲劳性是通过肌肉和神经因素的下层。与等距收缩相比,这种较高的影响归因于弹性带运动的动态性质。

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