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经颅直流电刺激可改善膝关节伸肌等长收缩至疲劳的时间。

Transcranial direct current stimulation improves isometric time to exhaustion of the knee extensors.

作者信息

Angius L, Pageaux B, Hopker J, Marcora S M, Mauger A R

机构信息

Endurance Research Group, School of Sport and Exercise Sciences, University of Kent, Chatham Maritime, UK.

Laboratoire INSERM U1093, Université de Bourgogne, Dijon, France.

出版信息

Neuroscience. 2016 Dec 17;339:363-375. doi: 10.1016/j.neuroscience.2016.10.028. Epub 2016 Oct 14.

Abstract

Transcranial direct current stimulation (tDCS) can increase cortical excitability of a targeted brain area, which may affect endurance exercise performance. However, optimal electrode placement for tDCS remains unclear. We tested the effect of two different tDCS electrode montages for improving exercise performance. Nine subjects underwent a control (CON), placebo (SHAM) and two different tDCS montage sessions in a randomized design. In one tDCS session, the anodal electrode was placed over the left motor cortex and the cathodal on contralateral forehead (HEAD), while for the other montage the anodal electrode was placed over the left motor cortex and cathodal electrode above the shoulder (SHOULDER). tDCS was delivered for 10min at 2.0mA, after which participants performed an isometric time to exhaustion (TTE) test of the right knee extensors. Peripheral and central neuromuscular parameters were assessed at baseline, after tDCS application and after TTE. Heart rate (HR), ratings of perceived exertion (RPE), and leg muscle exercise-induced muscle pain (PAIN) were monitored during the TTE. TTE was longer and RPE lower in the SHOULDER condition (P<0.05). Central and peripheral parameters, and HR and PAIN did not present any differences between conditions after tDCS stimulation (P>0.05). In all conditions maximal voluntary contraction (MVC) significantly decreased after the TTE (P<0.05) while motor-evoked potential area (MEP) increased after TTE (P<0.05). These findings demonstrate that SHOULDER montage is more effective than HEAD montage to improve endurance performance, likely through avoiding the negative effects of the cathode on excitability.

摘要

经颅直流电刺激(tDCS)可增强目标脑区的皮质兴奋性,这可能会影响耐力运动表现。然而,tDCS的最佳电极放置位置仍不明确。我们测试了两种不同的tDCS电极组合对改善运动表现的影响。九名受试者以随机设计接受了对照(CON)、安慰剂(SHAM)和两种不同的tDCS组合疗程。在一个tDCS疗程中,将阳极电极置于左侧运动皮层上方,阴极置于对侧前额(HEAD);而对于另一种组合,阳极电极置于左侧运动皮层上方,阴极电极置于肩部上方(SHOULDER)。以2.0mA施加tDCS 10分钟,之后参与者进行右膝伸肌的等长疲劳时间(TTE)测试。在基线、tDCS应用后和TTE后评估外周和中枢神经肌肉参数。在TTE期间监测心率(HR)、主观用力感觉评分(RPE)和腿部肌肉运动诱发的肌肉疼痛(PAIN)。在SHOULDER条件下,TTE更长且RPE更低(P<0.05)。tDCS刺激后,不同条件下的中枢和外周参数以及HR和PAIN均无差异(P>0.05)。在所有条件下,TTE后最大自主收缩(MVC)显著降低(P<0.05),而TTE后运动诱发电位面积(MEP)增加(P<0.05)。这些发现表明,SHOULDER组合比HEAD组合在提高耐力表现方面更有效,可能是通过避免阴极对兴奋性的负面影响。

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