Salgado de Oliveira University (UNIVERSO).
Augusto Mota University Center.
Res Q Exerc Sport. 2022 Mar;93(1):210-218. doi: 10.1080/02701367.2020.1815638. Epub 2020 Sep 15.
: The purpose of this study was to evaluate the effects of anodal tDCS applied over the dorsolateral prefrontal cortex (DLPFC) on muscle endurance in the back-squat exercise. : Eleven healthy males, intermediate in resistance training (RT), aged between 18 and 31 years (25.5 ± 4.4 years) were recruited. In the initial visits (1st and 2nd visits), participants performed a 1RM test to determine the load in the back-squat exercise. Following the two initials visits, participants attended the lab for the two experimental conditions (anodal tDCS and sham), which were completed a week apart, with sessions randomly counterbalanced. The stimulation was applied over the DLPFC for 20 minutes using a 2 mA current intensity. Immediately after the experimental conditions, participants completed three sets of maximum repetitions (80% of 1RM), with a 1-minute recovery interval between each set in the back-squat exercise. Muscle endurance was determined by the total number of repetitions and the number of repetitions in each set. : The total number of repetitions was higher in the anodal tDCS condition compared to sham condition ( ≤ .0001). Moreover, the number of repetitions performed in the first set was higher for anodal tDCS condition than in the sham condition ( ≤ .01). : This study found improvement in back-squat exercise performance after the application of anodal tDCS. The effects of anodal tDCS applied over DLPFC may be a promising ergogenic resource on muscle endurance in the back-squat exercise.
: 本研究旨在评估阳极经颅直流电刺激(tDCS)应用于背蹲运动的背外侧前额叶皮层(DLPFC)对肌肉耐力的影响。 : 11 名健康男性,处于抗阻训练(RT)的中间阶段(年龄在 18 至 31 岁之间,25.5±4.4 岁)被招募入组。在最初的两次访问(第 1 次和第 2 次访问)中,参与者进行了 1RM 测试,以确定背蹲运动的负荷。在最初的两次访问之后,参与者在一周内分别参加了两种实验条件(阳极 tDCS 和假刺激)的实验室实验,实验条件以随机平衡的方式进行。刺激应用于 DLPFC 20 分钟,电流强度为 2 mA。在实验条件结束后,参与者立即完成三组最大重复次数(80%的 1RM),每组之间休息 1 分钟,在背蹲运动中进行。肌肉耐力由重复总数和每组的重复次数决定。 : 与假刺激条件相比,阳极 tDCS 条件下的总重复次数更高(≤.0001)。此外,与假刺激条件相比,阳极 tDCS 条件下第一组的重复次数更高(≤.01)。 : 本研究发现,在应用阳极 tDCS 后,背蹲运动的表现得到了提高。阳极 tDCS 应用于 DLPFC 可能是提高背蹲运动肌肉耐力的一种有前途的能量资源。