运动中体温调节的生理学

H. Lenasi, Janez Šijanec
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引用次数: 1

摘要

在体育锻炼中,工作中的骨骼肌产生的热量增加,对身体造成热应激。热调节机制诱导皮肤血管传导调节,从而调节皮肤血流量(SkBF)、出汗率和心输出量增加,以实现热稳态。这种反应取决于运动的强度、类型、持续时间和环境温度:在炎热的环境中进行极端运动时,SkBF可以达到7l /min,而静止时为300 mL/min,而出汗率可以高达4l /h。由于相反的非热反射,运动时SkBF的热调节反应与静止时不同:皮肤诱导血管舒张的阈值被转移到更高的身体核心温度,“SkBF -核心温度”斜率的敏感性被改变。定期训练能使运动员更好地适应身体压力,从而使运动员能以最佳方式消除额外的热量。这篇综述强调了运动过程中体温调节的生理机制,揭示了一些关于人体核心温度估计的想法,以及一些最新的评估参数的新方法,这些参数对适当的散热至关重要,从而保持核心温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Physiology of Thermoregulation in Exercise
During physical exercise, the production of heat in the working skeletal muscles increases, imposing heat stress on the body. Thermoregulatory mechanisms induce adjustments of cutaneous vascular conductance and thus skin blood flow (SkBF), sweating rate, and increased cardiac output to achieve thermal homeostasis. The response depends on the intensity, type, duration of exercise, and environmental temperature: during extreme exercise in a hot environment SkBF can attain up to 7 L/min compared to 300 mL/min at rest whereas the sweating rate can reach as high as 4 L/h. Due to opposing non-thermal reflexes, the thermoregulatory response of SkBF during exercise differs from that at rest: the threshold to induce vasodilation in the skin is shifted to higher body core temperature and the sensitivity of the “SkBF to-core temperature” slope is altered. Regular training induces better adaptations to physical stress which enable sportsmen to eliminate additional heat more optimally. The review emphasizes physiological mechanisms involved in thermoregulation during exercise and exposes some thoughts regarding the estimation t of the core temperature in humans, as well as some new approaches for an up-to-date assessment of parameters important for appropriate heat dissipation thereby maintaining core temperature.
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