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超越经典热中性区:包括热舒适性。

Beyond the classic thermoneutral zone: Including thermal comfort.

作者信息

Kingma Boris Rm, Frijns Arjan Jh, Schellen Lisje, van Marken Lichtenbelt Wouter D

机构信息

Department of Human Biology; NUTRIM School for Nutrition, Toxicology and Metabolism of Maastricht University Medical Center+; Maastricht, The Netherlands; Department of Mechanical Engineering; Eindhoven University of Technology; Eindhoven, The Netherlands.

Department of Mechanical Engineering; Eindhoven University of Technology; Eindhoven, The Netherlands.

出版信息

Temperature (Austin). 2014 Jul 8;1(2):142-9. doi: 10.4161/temp.29702. eCollection 2014 Jul-Sep.

Abstract

The thermoneutral zone is defined as the range of ambient temperatures where the body can maintain its core temperature solely through regulating dry heat loss, i.e., skin blood flow. A living body can only maintain its core temperature when heat production and heat loss are balanced. That means that heat transport from body core to skin must equal heat transport from skin to the environment. This study focuses on what combinations of core and skin temperature satisfy the biophysical requirements of being in the thermoneutral zone for humans. Moreover, consequences are considered of changes in insulation and adding restrictions such as thermal comfort (i.e. driver for thermal behavior). A biophysical model was developed that calculates heat transport within a body, taking into account metabolic heat production, tissue insulation, and heat distribution by blood flow and equates that to heat loss to the environment, considering skin temperature, ambient temperature and other physical parameters. The biophysical analysis shows that the steady-state ambient temperature range associated with the thermoneutral zone does not guarantee that the body is in thermal balance at basal metabolic rate per se. Instead, depending on the combination of core temperature, mean skin temperature and ambient temperature, the body may require significant increases in heat production or heat loss to maintain stable core temperature. Therefore, the definition of the thermoneutral zone might need to be reformulated. Furthermore, after adding restrictions on skin temperature for thermal comfort, the ambient temperature range associated with thermal comfort is smaller than the thermoneutral zone. This, assuming animals seek thermal comfort, suggests that thermal behavior may be initiated already before the boundaries of the thermoneutral zone are reached.

摘要

热中性区被定义为环境温度的范围,在此范围内身体仅通过调节干热散失(即皮肤血流量)就能维持其核心温度。当产热和散热达到平衡时,活体才能维持其核心温度。这意味着从身体核心到皮肤的热传递必须等于从皮肤到环境的热传递。本研究聚焦于核心温度和皮肤温度的哪些组合满足人类处于热中性区的生物物理要求。此外,还考虑了隔热变化以及增加诸如热舒适度(即热行为的驱动因素)等限制条件的影响。开发了一个生物物理模型,该模型在考虑代谢产热、组织隔热以及通过血流进行的热分布的情况下,计算身体内部的热传递,并将其等同于向环境的热损失,同时考虑皮肤温度、环境温度和其他物理参数。生物物理分析表明,与热中性区相关的稳态环境温度范围本身并不能保证身体在基础代谢率下处于热平衡状态。相反,根据核心温度、平均皮肤温度和环境温度的组合,身体可能需要大幅增加产热或散热以维持稳定的核心温度。因此,热中性区的定义可能需要重新制定。此外,在对皮肤温度添加热舒适度限制后,与热舒适度相关的环境温度范围小于热中性区。假设动物寻求热舒适度,这表明热行为可能在达到热中性区边界之前就已经开始。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6247/4977175/e511b764d1b4/ktmp-01-02-10929702-g001.jpg

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