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首页> 外文期刊>European journal of applied physiology >Effect of neuromuscular electrical stimulation intensity over the tibial nerve trunk on triceps surae muscle fatigue
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Effect of neuromuscular electrical stimulation intensity over the tibial nerve trunk on triceps surae muscle fatigue

机译:神经肌肉电气刺激强度对三头肌躯干肌肉疲劳的胫骨神经刺激的影响

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摘要

Purpose: This study was designed to investigate whether the intensity modulation of a neuromuscular electrical stimulation (NMES) protocol delivered over the nerve trunk of the plantar flexors would lead to differential peripheral and central contributions of muscle fatigue. Methods: Three fatiguing isometric protocols of the plantar flexors matched for the same amount of isometric torque-time integral (TTI) were randomly performed including a volitional protocol at 20 % of the maximal voluntary contraction (MVC) and two NMES protocols (one at constant intensity, CST; the other at intensity level progressively adjusted to maintain 20 % of MVC, PROG). Results: No time x protocol interaction was found for any of the variables. The MVC decreased similarly (≈12 %, p < 0.001) after all protocols, so did the potentiated twitch responses (p = 0.001). Although voluntary activation of the plantar flexors did not change, maximal H-reflex to M-wave ratio of the soleus (SOL) and the gastrocnemius medialis (GM) muscles showed an overall increase (SOL: p = 0.037, GM: p = 0.041), while it remained stable for the gastrocnemius lateralis muscle (p = 0.221). A main time effect was observed only for the SOL maximal V-wave to the superimposed M-wave ratio (p = 0.024) and to the superimposed H-reflex (p = 0.008). While similar central and peripheral adaptations were observed after the three fatiguing protocols, the individual contribution of the three different triceps surae muscles was different. Conclusion: Whether the current intensity was increased or not, the adaptations after a NMES protocol yield to similar muscle fatigue adaptations as voluntary contractions likely through similar pathways matching a similar TTI.
机译:目的:本研究旨在探讨植物屈肌神经躯干上的神经肌肉电刺激(NMES)协议的强度调节是否会导致肌肉疲劳的差异外围和中枢贡献。方法:随机地进行三个匹配的匹配量的足底弯曲量的锻造等距协议,包括在最大自愿收缩(MVC)和两个NMES协议的20%(恒定)的20%的加速方案强度,CST;另一个处于强度水平逐渐调整以维持20%的MVC,PROG)。结果:找不到任何变量的时间x协议交互。所有协议后,MVC同样地降低(≈12%,p <0.001),所以调节的抽搐响应所以(p = 0.001)。虽然跖屈的自愿活化没有改变,但最大的H-反射到萼片(溶胶)的M波比和腓肠肌肌肉(GM)肌肉显示出总体增加(Sol:P = 0.037,GM:P = 0.041 ),虽然它保持稳定的胃肠肿瘤肌肉(P = 0.221)。仅针对溶胶最大V波观察到叠加的M波比(P = 0.024)和叠加的H-反射(P = 0.008)观察到主时间效应。虽然在三种疲劳方案后观察到类似的中央和外周适应,但三种不同三头肌肌肉的个体贡献不同。结论:当前强度是否增加,在纽姆斯方案后的适应性对类似的肌肉疲劳适应,作为匹配类似TTI的类似途径的自愿收缩。

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