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进行性脱水状态下间歇运动时的体温调节

Temperature regulation during intermittent exercise with progressive dehydration.

作者信息

Libert J P, Candas V, Amoros C, Sagot J C, Lenzi P

出版信息

Jpn J Physiol. 1986;36(2):253-66. doi: 10.2170/jjphysiol.36.253.

Abstract

Effects of dehydration (3% of initial body weight) on temperature regulation were investigated in 5 men during intermittent exercise of 4 h duration at a dry air temperature of 34 degrees C. Relative mechanical work load was 50% of the subject's steady state heart rate, which was 170 beats . min-1. During rehydration from the 70th min to the end of the exercise, the subjects drank, every 10 min in equal portions, an amount of water (20 degrees C) totaling up to 80% of the body weight loss recorded during dehydration runs. Continuous measurements were made of rectal (Tre) and mean skin (Tsk) temperatures and of whole body weight loss. Chest sweating rate (msw) was measured from a capsule located under a local thermal clamp (36 degrees C). Blood samples were obtained during rest periods and after the 1st and the 4th hour of exercise. Compared to dehydration runs, water intake did not always cause an increase of msw while body temperatures always decreased. Dehydration resulted in a decrease in plasma volume and in increases of plasma osmolality, [Na+] and [K+]. Water intake induced a thermoregulatory response whose intensity largely differs from one body area to another. The change in the slope of the relation of msw to Tre features a decrease in the sensitivity of the thermoregulatory system with dehydration. The whole body water loss is significantly correlated with the change in plasma volume and body temperatures (Tre, Tsk). This suggests that the reduced sweating response observed during dehydration can be related to plasma hypovolemia.

摘要

在5名男性中,研究了脱水(初始体重的3%)对体温调节的影响,这些男性在34摄氏度的干燥空气温度下进行了4小时的间歇运动。相对机械工作负荷为受试者稳态心率的50%,稳态心率为170次/分钟。在从第70分钟到运动结束的补液过程中,受试者每隔10分钟等量饮用一定量的水(20摄氏度),总量达到脱水试验期间记录的体重减轻量的80%。连续测量直肠温度(Tre)、平均皮肤温度(Tsk)和全身体重减轻情况。通过位于局部热夹(36摄氏度)下方的胶囊测量胸部出汗率(msw)。在休息期间以及运动第1小时和第4小时后采集血样。与脱水试验相比,饮水并不总是导致msw增加,而体温总是下降。脱水导致血浆量减少,血浆渗透压、[Na+]和[K+]增加。饮水引发了一种体温调节反应,其强度在不同身体部位差异很大。msw与Tre关系的斜率变化表明脱水会降低体温调节系统的敏感性。全身失水量与血浆量和体温(Tre,Tsk)的变化显著相关。这表明脱水期间观察到的出汗反应减少可能与血浆血容量减少有关。

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