Human Physiology and Sports Physiotherapy Research Group, Faculty of Physical Education and Physiotherapy, Vrije Universiteit Brussel, Brussels, Belgium.
BruBotics, Vrije Universiteit Brussel, Brussels, Belgium.
Int J Sports Physiol Perform. 2024 Aug 9;19(10):1158-1166. doi: 10.1123/ijspp.2023-0527. Print 2024 Oct 1.
The literature describing the effects of mental fatigue (MF) has grown tremendously. This is accompanied by identification of a host of performance-determining parameters affected by MF. MF results from prolonged cognitive effort and predominantly affects physical, technical, tactical, and perceptual-cognitive dimensions of sport, while physiological parameters (eg, heart rate, lactate) and physical aspects of maximal and supramaximal efforts are predominantly unaffected. The aim of this paper was to provide an overview of the parameters described in the literature as influenced by MF. By identifying the different parameters, we not only see how they affect the performance of athletes but also raise concerns about the potentially increased injury risk due to MF. Preliminary evidence suggests that subsequent disturbances in balance, motor skills, and decision-making processes could potentially increase the vulnerability to injury. An abundance of lab-based studies looked into the effects of MF on performance; however, many questions remain about the mechanisms of origin and neurophysiological causes of MF, and only small steps have been taken to translate this knowledge into practice. Thus, there is a need for more research into the underlying mechanisms of MF and the role of the brain, as well as more applied research with a high ecological validity that also takes into account the potential increased risk of injury due to MF.
描述心理疲劳(MF)影响的文献大量增加。这伴随着确定了许多受 MF 影响的表现决定参数。MF 是由长时间的认知努力引起的,主要影响运动的身体、技术、战术和感知认知维度,而生理参数(如心率、乳酸)和最大和超最大努力的身体方面则主要不受影响。本文的目的是提供一个概述,说明文献中描述的受 MF 影响的参数。通过确定不同的参数,我们不仅可以看到它们如何影响运动员的表现,还可以关注由于 MF 可能导致的受伤风险增加。初步证据表明,随后的平衡、运动技能和决策过程的干扰可能会增加受伤的脆弱性。大量基于实验室的研究探讨了 MF 对表现的影响;然而,关于 MF 的起源机制和神经生理原因仍有许多问题,并且仅采取了一些小步骤将这些知识转化为实践。因此,需要对 MF 的潜在机制以及大脑的作用进行更多的研究,同时还需要进行具有高度生态有效性的应用研究,该研究还需要考虑由于 MF 导致的受伤风险增加的潜在影响。