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Underlying mechanism of diurnal change in thermal sensation response at high relative humidity

机译:高相对湿度热敏感应响应差异变化的基础机制

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摘要

Diurnal changes in physiological and behavioral responses to constant relative humidity (RH) were investigated in summer to validate a hypothesis that thermal sensation responses (TSR) vary with the diurnal cycle while maintained at stable RH?s of 60, 70, or 80%. Seven lightly clothed male subjects were exposed to one of three RH while air temperature (T-a) was held at 28 degrees C from 9:00-18:30. Mean skin temperature ((T) over bar (sk)) and tympanic temperature (T-ty) were monitored at 2-min intervals throughout the experimental period. Cutaneous warm and cool sensation thresholds and stratum corneum water content (SCWC) on the anterior forearm, posterior forearm, and anterior thigh, finger blood flow rate (SkBF) were measured by a thermal stimulator controlled by a Peltier element (Intercross-230; Intercross, Co., Tokyo, Japan), a water content of stratum corneum monitor (Corneometer CM825 & MPA 5; Integral Co., Tokyo, Japan), and a laser flowmeter (ALF21; Advance Co., Tokyo, Japan), accordingly at the end of three periods: 9:30-10:30, 13:30-14:30, and 17:30-18:30. The TSR and the thermal comfort response were also recorded using subjective scales of thermal sensation and comfort thresholds at the end of three periods. The Tty and mean skin temperature ((T) over bar (sk)) remained unchanged during the day under all RH conditions. Temperature difference between warm and cold sensation thresholds and SkBF decreased slightly towards the evening under all RH conditions whereas SCWC increased from the morning to the evening at 60% and 80% RH. Behaviorally, the subjects responded more than "slightly warm" at 70%, and 80% RH, and then the TSR changed significantly (p < 0.05) to less than "slightly warm" in the evening, although T-sk(-) remained unchanged at 34.0 degrees C. The results from the previous study in winter was reconfirmed, and the data verify the hypothesis that TSR changes diurnally even though subjects are exposed to a constant and high RH's and stable T-a. It was confirmed in summertime as previously shown in wintertime that the combined reduction in SkBF to increases SCWC when exposed to high RH explains the altered TSR although T-a are unchanged.
机译:在夏季研究了对恒定相对湿度(RH)的生理和行为反应的日变化,以验证热感觉反应(TSR)在保持稳定相对湿度的情况下随日变化的假设?60%、70%或80%的比例。七名衣着轻薄的男性受试者在9:00-18:30将空气温度(T-a)保持在28℃时暴露于三种相对湿度中的一种。在整个实验期间,每隔2分钟监测平均皮肤温度((T)超过bar(sk))和鼓室温度(T-ty)。前臂前部、前臂后部和大腿前部的皮肤冷暖感觉阈值和角质层含水量(SCWC)以及手指血流量(SkBF)由珀尔贴元件(Intercross-230;Intercross,Co.,Tokyo,Japan)控制的热刺激器测量,这是一种角质层含水量监测仪(Corneometer CM825&MPA 5;Integral Co.,Tokyo,Japan),和激光流量计(ALF21;日本东京Advance Co.,东京),相应地在三个时段结束时:9:30-10:30、13:30-14:30和17:30-18:30。在三个周期结束时,还使用主观热感觉量表和舒适阈值记录TSR和热舒适反应。在所有相对湿度条件下,Tty和平均皮肤温度((T)超过bar(sk))在白天保持不变。在所有相对湿度条件下,温暖和寒冷感觉阈值和SkBF之间的温差在晚上略有减小,而在相对湿度为60%和80%时,SCWC从早上到晚上有所增加。行为上,受试者在70%相对湿度和80%相对湿度下的反应超过“轻微温暖”,然后TSR在晚上显著变化(p<0.05)到“轻微温暖”以下,尽管T-sk(-)在34.0摄氏度时保持不变。之前的冬季研究结果再次得到证实,这些数据验证了即使受试者暴露在恒定、高相对湿度和稳定的T-a下,TSR也会在白天发生变化的假设。正如之前在冬季所示,在夏季,尽管T-a没有变化,但在暴露于高相对湿度时,SkBF的减少与SCWC的增加相结合,解释了TSR的变化。

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