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在剧烈运动期间背外侧前额叶皮层的功能意义。

Functional significance of the dorsolateral prefrontal cortex during exhaustive exercise.

机构信息

Department of Teaching and Learning, College of Arts, Sciences & Education, Florida International University, USA.

Wheelock College of Education & Human Development, Boston University, USA.

出版信息

Biol Psychol. 2022 Nov;175:108442. doi: 10.1016/j.biopsycho.2022.108442. Epub 2022 Oct 13.

Abstract

Given the extensive neural networks connecting the dorsolateral prefrontal cortex (DLPFC) with other subcortical regions, the DLPFC has been implicated in a wide range of psychological and physiological functions during execution of movements. The main objective of this narrative review is to provide a solid theoretical foundation to deepen our understanding of the functional significance of the DLPFC during exercise. Given the limited scientific evidence in this field of scientific enquiry, this review was primarily focused on fatiguing and exhaustive exercise modes. The authors reviewed the anatomical structure of this region, as well as its functional importance for physical tasks performed mainly at moderate and high intensities. The majority of the studies employed noninvasive brain assessment techniques, such as electroencephalography, functional near-infrared spectroscopy, and functional magnetic resonance imaging. Six main DLPFC functions were identified: 1) exercise tolerance, 2) executive function, 3) attention allocation, 4) emotion regulation, 5) reward seeking, and 6) memory formation. The most important neuromodulatory function exerted by the DLPFC pertains to the inhibitory influence of this region over the amygdala and the hypothalamic-pituitary-adrenal axis. This inhibitory function appears to be the primary possibility and is generally reliant upon connectivity with other subcortical regions. During exhaustive exercise, stress hormones appear to have an inhibitory effect on the DLPFC and hippocampus. The present authors hypothesize that the use of cognitive strategies to partially neutralize the amygdala may rely on the presence of rewards, which are then translated into motivation to action through the mesolimbic and mesocortical dopamine systems.

摘要

鉴于背外侧前额叶皮层 (DLPFC) 与其他皮质下区域之间存在广泛的神经网络连接,DLPFC 被认为在执行运动时参与了广泛的心理和生理功能。本叙述性综述的主要目的是提供一个坚实的理论基础,以加深我们对运动过程中 DLPFC 功能意义的理解。鉴于该科学研究领域的科学证据有限,本综述主要集中在疲劳和耗尽性运动模式上。作者回顾了该区域的解剖结构,以及它对主要在中高强度下进行的身体任务的功能重要性。大多数研究采用了非侵入性脑评估技术,如脑电图、近红外功能磁共振成像和功能磁共振成像。确定了 DLPFC 的六个主要功能:1)运动耐力,2)执行功能,3)注意力分配,4)情绪调节,5)奖励寻求,6)记忆形成。DLPFC 发挥的最重要的神经调节功能是该区域对杏仁核和下丘脑-垂体-肾上腺轴的抑制影响。这种抑制功能似乎是主要的可能性,通常依赖于与其他皮质下区域的连接。在剧烈运动中,应激激素似乎对 DLPFC 和海马体有抑制作用。作者假设,使用认知策略部分中和杏仁核可能依赖于奖励的存在,然后通过中脑边缘和中脑皮质多巴胺系统将奖励转化为行动动机。

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