Angius L, Mauger A R, Hopker J, Pascual-Leone A, Santarnecchi E, Marcora S M
Endurance Research Group, School of Sport and Exercise Sciences, University of Kent, Chatham Maritime, UK.
Endurance Research Group, School of Sport and Exercise Sciences, University of Kent, Chatham Maritime, UK.
Brain Stimul. 2018 Jan-Feb;11(1):108-117. doi: 10.1016/j.brs.2017.09.017. Epub 2017 Oct 5.
Transcranial direct current stimulation (tDCS) has been used to enhance endurance performance but its precise mechanisms and effects remain unknown.
To investigate the effect of bilateral tDCS on neuromuscular function and performance during a cycling time to task failure (TTF) test.
Twelve participants in randomized order received a placebo tDCS (SHAM) or real tDCS with two cathodes (CATHODAL) or two anodes (ANODAL) over bilateral motor cortices and the opposite electrode pair over the ipsilateral shoulders. Each session lasted 10 min and current was set at 2 mA. Neuromuscular assessment was performed before and after tDCS and was followed by a cycling time to task failure (TTF) test. Heart rate (HR), ratings of perceived exertion (RPE), leg muscle pain (PAIN) and blood lactate accumulation (ΔB[La]) in response to the cycling TTF test were measured.
Corticospinal excitability increased in the ANODAL condition (P < 0.001) while none of the other neuromuscular parameters showed any change. Neuromuscular parameters did not change in the SHAM and CATHODAL conditions. TTF was significantly longer in the ANODAL (P = 0.003) compared to CATHODAL and SHAM conditions (12.61 ± 4.65 min; 10.61 ± 4.34 min; 10.21 ± 3.47 min respectively), with significantly lower RPE and higher ΔB[La] (P < 0.001). No differences between conditions were found for HR (P = 0.803) and PAIN during the cycling TTF test (P = 0.305).
Our findings demonstrate that tDCS with the anode over both motor cortices using a bilateral extracephalic reference improves endurance performance.
经颅直流电刺激(tDCS)已被用于提高耐力表现,但其确切机制和效果仍不清楚。
研究双侧tDCS对自行车运动至任务失败(TTF)测试期间神经肌肉功能和表现的影响。
12名参与者按随机顺序接受安慰剂tDCS(假刺激)或真正的tDCS,分别在双侧运动皮层放置两个阴极(阴极刺激)或两个阳极(阳极刺激),并在同侧肩部放置相对的电极对。每次刺激持续10分钟,电流设定为2毫安。在tDCS前后进行神经肌肉评估,随后进行自行车运动至任务失败(TTF)测试。测量自行车TTF测试后的心率(HR)、主观用力程度分级(RPE)、腿部肌肉疼痛(PAIN)和血乳酸积累(ΔB[La])。
阳极刺激条件下皮质脊髓兴奋性增加(P < 0.001),而其他神经肌肉参数均无变化。假刺激和阴极刺激条件下神经肌肉参数未改变。与阴极刺激和假刺激条件相比,阳极刺激条件下TTF显著延长(P = 0.003)(分别为12.61 ± 4.65分钟;10.61 ± 4.34分钟;10.21 ± 3.47分钟),RPE显著降低,ΔB[La]显著升高(P < 0.001)。在自行车TTF测试期间,HR(P = 0.803)和PAIN(P = 0.305)在各条件之间未发现差异。
我们的研究结果表明,使用双侧头皮外参考电极且阳极置于双侧运动皮层的tDCS可提高耐力表现。