头部温度调节人类在寒冷环境中的热行为。

Toby Mündel, Aaron Raman, Zachary J Schlader
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引用次数: 0

摘要

我们测试了一个假设,即皮肤温度(尤其是头部皮肤温度)能够调节寒冷环境下运动时的热行为。经过熟悉后,8 名年轻、健康、喜欢娱乐的男性完成了 3 次试验,每次试验包括在 6°C 温度下进行 30 分钟的自定节奏自行车测力。参与者被要求控制运动速度,以达到并保持热舒适度。在一次试验中,参与者只穿短裤和鞋子(对照组),而在另外两次试验中,他们的头部要么被加温(升温),要么被降温(降温)。对工作率、代谢产热率、热感知、直肠温度、平均加权皮肤温度和头部温度进行了测量。在运动的第一分钟和第二分钟后,"热身 "和 "降温 "时的运动功耗分别降低和增加(P ≤ 0.04),代谢产热率反映了功耗。在运动的早期阶段(≤5 分钟),直肠温度随时间的变化可忽略不计且相似(0.1 ± 0.1°C,P = 0.51),而平均皮肤温度的下降在所有试验中没有差异(1.7 ± 0.6°C,P = 0.13)。头部平均温度要么降低(对照组:1.5 ± 1.1°C;冷却组:2.9 ± 0.8°C,P 均 < 0.01),要么升高(升温组:1.7 ± 0.9°C,P < 0.01)。在 "升温 "模式下,头部的热感觉更温暖、更舒适,而在 "降温 "模式下,头部的热感觉更凉爽、更不舒适(P < 0.01)。在所有试验中,参与者在 10 ± 7 分钟后都达到了类似的热舒适度(P > 0.09),这种舒适度一直保持到运动结束。这些结果表明,外周温度会调节寒冷时的热行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Head temperature modulates thermal behavior in the cold in humans.

We tested the hypothesis that skin temperature, specifically of the head, is capable of modulating thermal behavior during exercise in the cold. Following familiarization 8 young, healthy, recreationally active males completed 3 trials, each consisting of 30 minutes of self-paced cycle ergometry in 6°C. Participants were instructed to control their exercise work rate to achieve and maintain thermal comfort. On one occasion participants wore only shorts and shoes (Control) and on the 2 other occasions their head was either warmed (Warming) or cooled (Cooling). Work rate, rate of metabolic heat production, thermal perceptions, rectal, mean weighted skin and head temperatures were measured. Exercise work rate was reduced during Warming and augmented during Cooling after the first and second minutes of exercise, respectively (P ≤ 0.04), with the rate of metabolic heat production mirroring work rate. At this early stage of exercise (≤5 min) the changes over time for rectal temperature were negligible and similar (0.1 ± 0.1°C, P = 0.51), while the decrease in mean skin temperature was not different between all trials (1.7 ± 0.6°C, P = 0.13). Mean head temperature was either decreased (Control: 1.5 ± 1.1°C, Cooling: 2.9 ± 0.8°C, both P < 0.01) or increased (Warming: 1.7 ± 0.9°C, P < 0.01). Head thermal perception was warmer and more comfortable in Warming and cooler and less comfortable in Cooling (P < 0.01). Participants achieved thermal comfort similarly in all trials (P > 0.09) after 10 ± 7 min and this was maintained until the end of exercise. These results indicate that peripheral temperatures modulate thermal behavior in the cold.

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