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热输入对大脑运动调节的影响:进化视角

The influence of thermal inputs on brain regulation of exercise: An evolutionary perspective.

作者信息

Marino Frank E

机构信息

School of Exercise Science, Sport & Health, Charles Sturt University, Bathurst, NSW, Australia.

出版信息

Prog Brain Res. 2018;240:269-289. doi: 10.1016/bs.pbr.2018.07.005. Epub 2018 Aug 20.

Abstract

The relationship between performance, heat load and the ability to withstand serious thermal insult is a key factor in understanding how endurance is regulated. The capacity to withstand high thermal loads is not unique to humans and is typical to all mammals. Thermoregulation is an evolutionary adaptation which is species specific and should be regarded as a survival strategy rather than purely a physiological response. The fact that mammals have selected ~37°C as a set point could be a key factor in understanding our endurance capabilities and strategy. Endurance presents a significant challenge to bodily homeostasis while our thermoregulatory strategy is able to cope exquisitely under the most unfavorable conditions. The ability of the CNS to regulate this strategy is key in athletic performance since the thermoregulatory center is located within the brain and receives input from multiple systems and deploys effector responses as needed. This chapter will discuss the evolution of thermoregulation in humans and propose that the brain is more than sufficiently capable of maintaining thermal-homeostasis because of its evolutionary path. As such, this is connected to our ability to modulate efferent drive during heat strain and in so doing provides us with the capability to pace during endurance events in the heat.

摘要

运动表现、热负荷与承受严重热损伤能力之间的关系是理解耐力如何调节的关键因素。承受高热负荷的能力并非人类所独有,而是所有哺乳动物的典型特征。体温调节是一种特定物种的进化适应,应被视为一种生存策略,而不仅仅是一种生理反应。哺乳动物将体温设定点选择为约37°C这一事实可能是理解我们耐力能力和策略的关键因素。耐力对身体内环境稳定构成重大挑战,而我们的体温调节策略能够在最不利的条件下出色地应对。中枢神经系统调节这一策略的能力对运动表现至关重要,因为体温调节中枢位于大脑内,接收来自多个系统的输入,并根据需要部署效应器反应。本章将讨论人类体温调节的进化,并提出由于其进化路径,大脑完全有能力维持热平衡。因此,这与我们在热应激期间调节传出驱动的能力相关,并使我们有能力在高温耐力项目中调整节奏。

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