Applied Biomechanics and Sport Technology Research Group, Autonomous University of Madrid, C/ Fco Tomas Y Valiente 3, Cantoblanco, 28049, Madrid, Spain.
ICEN Institute, Madrid, Spain.
Eur J Appl Physiol. 2023 Aug;123(8):1671-1684. doi: 10.1007/s00421-023-05189-1. Epub 2023 Mar 29.
Mental fatigue (MF) does not only affect cognitive but also physical performance. This study aimed to explore the effects of MF on muscle endurance, rate of perceived exertion (RPE), and motor units' activity. Ten healthy males participated in a randomised crossover study. The subjects attended two identical experimental sessions separated by 3 days with the only difference of a cognitive task (incongruent Stroop task [ST]) and a control condition (watching a documentary). Perceived MF and motivation were measured for each session at baseline and after each cognitive task. Four contractions at 20% of maximal voluntary contraction (MVIC) were performed at baseline, after each cognitive and after muscle endurance task while measuring motor units by high-density surface electromyography. Muscle endurance until failure at 50% of MVIC was measured after each cognitive task and the RPE was measured right after failure. ST significantly increased MF (p = 0.001) reduced the motivation (p = 0.008) for the subsequent physical task and also impaired physical performance (p = 0.044). However, estimates of common synaptic inputs and motor unit discharge rates as well as RPE were not affected by MF (p > 0.11). In conclusion, MF impairs muscle endurance and motivation for the physical task but not the neural drive to the muscle at any frequency bands. Although it is physiologically possible for mentally fatigued subjects to generate an optimal neuromuscular function, the altered motivation seems to limit physical performance. Preliminarily, our results suggest that the corticospinal pathways are not affected by MF.
精神疲劳(MF)不仅会影响认知能力,还会影响身体表现。本研究旨在探讨 MF 对肌肉耐力、感知用力(RPE)和运动单位活动的影响。10 名健康男性参加了一项随机交叉研究。受试者参加了两次完全相同的实验,两次实验之间相隔 3 天,唯一的区别是进行了认知任务(不一致 Stroop 任务 [ST])和对照条件(观看纪录片)。每次实验时,在基线和每次认知任务后测量感知 MF 和动机。在基线、每次认知任务后和肌肉耐力任务后,以 20%最大自主收缩(MVIC)的 4 次收缩测量运动单位,同时通过高密度表面肌电图测量运动单位。每次认知任务后测量 50%MVIC 时的肌肉耐力至衰竭,并在衰竭后立即测量 RPE。ST 显著增加了 MF(p=0.001),降低了随后的体力任务的动机(p=0.008),也损害了体力表现(p=0.044)。然而,MF 并未影响共同突触输入和运动单位放电率的估计值以及 RPE(p>0.11)。总之,MF 会损害肌肉耐力和进行体力任务的动机,但不会影响任何频段的肌肉神经驱动。尽管在生理上,精神疲劳的受试者可能会产生最佳的神经肌肉功能,但改变的动机似乎限制了体力表现。初步结果表明,皮质脊髓通路不受 MF 影响。