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重度劳动期间皮肤温度对出汗及有氧工作能力的影响。

Influence of skin temperature on sweating and aerobic performance during severe work.

作者信息

Davies C T

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1979 Oct;47(4):770-7. doi: 10.1152/jappl.1979.47.4.770.

Abstract

Two male subjects were measured over a range of work intensities at dry-bulb temperature (Tdb) = 21 degrees C (relative humidity, rh less than 50%) and at approximately 65 and 85% VO2max for 1 h at Tdb at 5,10,15,21, and 25 degrees C with high convective airflow (2.5-5 m/s). The results showed that mean skin temperature (Tsk) was related to Tdb and unaffected by rh over the range studied. Tsk was dependent on the relative work load and was 2.5 degrees C lower at 85% than 65% VO2max in the cooler environments. During submaximal work the relative sweat rate (Msw expressed as %Mse, max) was a linear function of rectal temperature (Tre) and Tsk for each subject and thus %Msw, max could be predicted from these two variables with a standard deviation of +/- 12%. For a given Tsk, Tre appeared to rise to meet the requirement of heat loss by stimulating set %Msw response. However, during severe work (85% VO2max) this mechanism appeared to become saturated, Tre (except for a very narrow prescriptive range) was dependent on Tdb. These results suggest that under moderate environmental conditions the maximal aerobic and evaporative (cooling) power outputs of an individual are closely matched and only during extremely hard work does thermoregulation become passive and effectively physical (rather than physiological) in nature.

摘要

在干球温度(Tdb)=21摄氏度(相对湿度,rh小于50%)以及在大约65%和85%最大摄氧量(VO2max)的情况下,对两名男性受试者在一系列工作强度下进行了测量。在5、10、15、21和25摄氏度的干球温度下,以高对流气流(2.5 - 5米/秒)持续1小时。结果表明,在所研究的范围内,平均皮肤温度(Tsk)与干球温度相关,且不受相对湿度的影响。Tsk取决于相对工作负荷,在较凉爽的环境中,85%VO2max时的Tsk比65%VO2max时低2.5摄氏度。在次最大工作期间,每个受试者的相对出汗率(Msw表示为%Mse,max)是直肠温度(Tre)和Tsk的线性函数,因此可以从这两个变量预测%Msw,max,标准差为±12%。对于给定的Tsk,Tre似乎通过刺激设定的%Msw反应上升以满足散热需求。然而,在剧烈工作(85%VO2max)期间,这种机制似乎变得饱和,Tre(除了非常狭窄的规定范围)取决于干球温度。这些结果表明,在中等环境条件下,个体的最大有氧和蒸发(冷却)功率输出紧密匹配,只有在极其艰苦的工作期间,体温调节才会变得被动且本质上有效地是物理性的(而非生理性的)。

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