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神经肌肉电刺激训练后停训期间神经驱动的保留情况。

Neural drive preservation after detraining following neuromuscular electrical stimulation training.

作者信息

Gondin Julien, Duclay Julien, Martin Alain

机构信息

INSERM ERM 207 Motricité Plasticité Laboratory, Faculty of Sport Sciences, BP 27877, University of Burgundy, 21078 Dijon Cedex, France.

出版信息

Neurosci Lett. 2006 Dec 6;409(3):210-4. doi: 10.1016/j.neulet.2006.09.045. Epub 2006 Oct 5.

Abstract

The purpose of the study was to investigate the behaviour of the central nervous system when 5 weeks of neuromuscular electrical stimulation (NMES) training was followed by 5 weeks of detraining. Nineteen males were divided into the neuromuscular electrostimulated group (EG, n=12) and the control group (CG, n=7). The training program consisted of 15 sessions of isometric NMES over a 5-week period. The EG subjects were tested before training (PRE), after 5 weeks of NMES training (POST) and after 5 weeks of detraining (DE) while CG subjects were only tested at PRE and at POST. Soleus (SOL) and gastrocnemii (GAS) maximal H-reflex and M-wave potentials were evoked at rest (i.e., H(max) and M(max), respectively) and during maximal voluntary contraction (MVC) (i.e., H(sup) and M(sup), respectively). SOL and GAS V-wave were recorded by supramaximal stimulation delivered during MVC. SOL and GAS electromyographic (EMG) activity as well as muscle activation were also assessed during MVC. After training, plantar flexor MVC increased significantly by 22% (P<0.001). Torque gains were associated with an increase in muscle activation (P<0.05), SOL and GAS normalized EMG activity (P<0.01 and P<0.05, respectively) and V/M(sup) ratios (P<0.01 and P<0.05, respectively). No significant changes occurred in any of these parameters between POST and DE. H(max)/M(max) and H(sup)/M(sup) ratios for both muscles were unchanged after both the training and detraining periods. In conclusion, the NMES training-induced neural adaptations were maintained after detraining, suggesting that neural changes are long-lasting and did not affect the elements of H-reflex pathways.

摘要

本研究的目的是调查在进行5周的神经肌肉电刺激(NMES)训练后再进行5周停训时中枢神经系统的行为表现。19名男性被分为神经肌肉电刺激组(EG,n = 12)和对照组(CG,n = 7)。训练方案包括在5周内进行15次等长NMES训练。EG组受试者在训练前(PRE)、5周NMES训练后(POST)和5周停训后(DE)进行测试,而CG组受试者仅在PRE和POST进行测试。在静息状态下(即分别为H(max)和M(max))以及最大自主收缩(MVC)期间(即分别为H(sup)和M(sup))诱发比目鱼肌(SOL)和腓肠肌(GAS)的最大H反射和M波电位。在MVC期间通过超强刺激记录SOL和GAS的V波。在MVC期间还评估了SOL和GAS的肌电图(EMG)活动以及肌肉激活情况。训练后,跖屈MVC显著增加了22%(P<0.001)。扭矩增加与肌肉激活增加(P<0.05)、SOL和GAS标准化EMG活动增加(分别为P<0.01和P<0.05)以及V/M(sup)比值增加(分别为P<0.01和P<0.05)相关。在POST和DE之间,这些参数均未发生显著变化。在训练期和停训期后,两块肌肉的H(max)/M(max)和H(sup)/M(sup)比值均未改变。总之,停训后NMES训练诱导的神经适应性得以维持,这表明神经变化是持久的,并且没有影响H反射通路的组成部分。

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