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高温期间头部温度对生理、舒适度及表现的影响。

Head-temperature effects on physiology, comfort, and performance during hyperthermia.

作者信息

Nunneley S A, Reader D C, Maldonado R J

出版信息

Aviat Space Environ Med. 1982 Jul;53(7):623-8.

PMID:7115249
Abstract

This study assessed the effects of head temperature on subjects under hyperthermic conditions. Six volunteers were trained to plateau on a manikin task that tested cognitive performance and reaction time. A subject's core temperature was driven with a full-length, liquid-conditioned garment perfused with water at 30 degrees or 43 degrees C, and head temperature was controlled by a cap with an inlet temperature of 8 degrees or 43 degrees C. Heavy insulation was worn overall; ambient temperature was 30 degrees C. Subjects were heated and cooled twice during each experiment to include all possible cap/suit temperature combinations. Each subject did one control and four stress experiments. Comfort and performance were measured as the subject's esophageal temperature (Tes) rose and fell through the range 37.5-39.0 degrees C. Cap temperature did not affect rectal temperature (Tre) but significantly altered the Tes rate of change; a cool head sometimes truncated the peak Tes value. Although the cap covered only 3-4% of the body surface, the head was a major determinant of subjective comfort. Body heating tended to shorten reaction time and diminish performance accuracy, while head cooling largely reversed these trends. Possible mechanisms include 1) change in overall heat balance; 2) countercurrent exchanges in the neck, and 3) change in sensory output. Head cooling deserves serious consideration for machinery operators where whole-body thermoneutrality is impractical.

摘要

本研究评估了头部温度对处于高温环境下受试者的影响。六名志愿者接受训练,在一个测试认知能力和反应时间的人体模型任务中达到稳定状态。通过一件全长的、用30摄氏度或43摄氏度水灌注的液体调节服装来调节受试者的核心温度,并用一种入口温度为8摄氏度或43摄氏度的帽子来控制头部温度。受试者全身穿着厚重的隔热服;环境温度为30摄氏度。在每个实验过程中,受试者经历两次加热和冷却,以涵盖所有可能的帽子/服装温度组合。每个受试者进行一次对照实验和四次应激实验。在受试者的食管温度(Tes)在37.5 - 39.0摄氏度范围内上升和下降时,测量舒适度和表现。帽子温度不影响直肠温度(Tre),但显著改变了Tes的变化率;头部凉爽有时会使Tes峰值降低。尽管帽子仅覆盖身体表面的3 - 4%,但头部是主观舒适度的主要决定因素。身体升温往往会缩短反应时间并降低表现准确性,而头部降温在很大程度上扭转了这些趋势。可能的机制包括:1)整体热平衡的变化;2)颈部的逆流交换;3)感觉输出的变化。对于全身保持热中性不切实际的机械操作员而言,头部降温值得认真考虑。

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