首页> 外文期刊>American Industrial Hygiene Association Journal >Prediction of rectal temperature by the Questemp II personal heat strain monitor under low and moderate heat stress.
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Prediction of rectal temperature by the Questemp II personal heat strain monitor under low and moderate heat stress.

机译:在中低热应激条件下,Questemp II个人热应变监测仪可预测直肠温度。

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摘要

This study assessed the use of aural canal temperature measured with the Questemp II personal heat strain monitor (Tq) relative to rectal temperature (Tre) during simulated industrial work in three different wet bulb globe temperatures (WBGT). Sixteen subjects performed walking and arm curl exercise at a rate of 300 kcal/hour for 4 hours while wearing Saranex protective coveralls in 18, 23, and 27 degrees C WBGT environments and wearing the Questemp II. Correlations were determined between Tre and Tq for the three conditions and for all conditions combined. Pearson r values were 0.48 (18 degrees C WBGT), 0.42 (23 degrees C WBGT), 0.38 (27 degrees WBGT), and 0.50 (all trials). Because a major concern is safe maximum core body temperature, means and standard deviations for differences between Tre and Tq were assessed at peak temperatures to determine the predictability of Tre from Tq solely at these points. Large standard deviations in delta values relative to a small overall tolerable temperature range ruled out the use of Tq in this manner. Based on the current data, aural canal temperature as measured with the Questemp II did not provide an accurate reflection of Tre across time nor at peak core temperatures during low to moderate heat strain.
机译:这项研究评估了使用Questemp II个人热应变监测器(Tq)相对于直肠温度(Tre)在三种不同的湿球温度(WBGT)下进行的工业工作期间耳道温度的使用情况。 16名受试者在18、23和27摄氏度WBGT环境中穿着Saranex防护工作服并穿着Questemp II时,以300 kcal /小时的速度进行了4个小时的步行和手臂弯曲运动。确定了这三个条件以及所有条件组合的Tre和Tq之间的相关性。 Pearson r值分别为0.48(18摄氏度WBGT),0.42(23摄氏度WBGT),0.38(27摄氏度WBGT)和0.50(所有试验)。由于主要关注的是安全的最高核心体温,因此在峰值温度下评估Tre和Tq之间差异的平均值和标准偏差,以确定仅在这些点上从Tq得出Tre的可预测性。相对于较小的总体可承受温度范围,Δ值的较大标准偏差排除了以这种方式使用Tq。根据当前数据,使用Questemp II测量的耳道温度无法在整个时间范围内以及在中低热应变期间的峰值核心温度处提供Tre的准确反映。

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