Alix-Fages Carlos, Romero-Arenas Salvador, Castro-Alonso Marcos, Colomer-Poveda David, Río-Rodriguez Dan, Jerez-Martínez Agustín, Fernandez-Del-Olmo Miguel, Márquez Gonzalo
Department of Physical Education and Sport, Faculty of Sport Sciences, Catholic University of Murcia (UCAM), Murcia 30107, Spain.
Department of Physical Education, University of A Coruña, La Coruña 15279, Spain.
J Clin Med. 2019 Apr 18;8(4):536. doi: 10.3390/jcm8040536.
The purpose of the present systematic review and meta-analysis was to explore the effects of transcranial direct current stimulation (tDCS) on endurance (i.e., time to task failure (TTF)) and maximal voluntary contraction (MVC). Furthermore, we aimed to analyze whether the duration of stimulation, the brain region targeted for stimulation, and the task performed could also influence motor performance. We performed a systematic literature review in the databases MEDLINE and Web of Science. The short-term effects of anodal tDCS and sham stimulation (placebo) were considered as experimental and control conditions, respectively. A total of 31 interventions were included (MVC = 13; TTF = 18). Analysis of the strength-related tDCS studies showed small improvements in the MVC (SMD = 0.19; 95% CI = -0.02, 0.41; = 0.08). However, the results of the endurance-related interventions indicated a moderate effect on TTF performance (SMD = 0.26; 95% CI = 0.07, 0.45; = 0.008). Furthermore, the sub-analysis showed that anodal tDCS over M1 and stimulation durations longer than 10 min produced the best results in terms of TTF performance enhancement. Additionally, the effects of anodal tDCS were larger during full body exercises (i.e., cycling) when compared to uniarticular tasks. In conclusion, the current meta-analysis indicated that anodal tDCS leads to small and moderate effects on MVC and TTF, respectively.
本系统评价和荟萃分析的目的是探讨经颅直流电刺激(tDCS)对耐力(即任务失败时间(TTF))和最大自主收缩(MVC)的影响。此外,我们旨在分析刺激持续时间、刺激靶向的脑区以及所执行的任务是否也会影响运动表现。我们在MEDLINE和科学网数据库中进行了系统的文献综述。阳极tDCS和假刺激(安慰剂)的短期效应分别被视为实验条件和对照条件。共纳入31项干预措施(MVC = 13项;TTF = 18项)。对与力量相关的tDCS研究的分析表明,MVC有小幅改善(标准化均数差(SMD) = 0.19;95%置信区间(CI) = -0.02, 0.41;P = 0.08)。然而,与耐力相关的干预结果表明,对TTF表现有中度影响(SMD = 0.26;95%CI = 0.07, 0.45;P = 0.008)。此外,亚组分析表明,在M1区进行阳极tDCS以及刺激持续时间超过10分钟,在提高TTF表现方面产生了最佳效果。此外,与单关节任务相比,在全身运动(即骑自行车)期间阳极tDCS的效果更大。总之,当前的荟萃分析表明,阳极tDCS分别对MVC和TTF产生小和中度的影响。