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被动热应激出汗反应的昼夜变化。

Circadian variation of sweating responses to passive heat stress.

作者信息

Aoki K, Kondo N, Shibasaki M, Takano S, Tominaga H, Katsuura T

机构信息

Division of Design Science, Graduate School of Science and Technology, Chiba University, Japan.

出版信息

Acta Physiol Scand. 1997 Nov;161(3):397-402. doi: 10.1046/j.1365-201X.1997.d01-1981.x.

Abstract

The aim of present study was to examine whether sweating responses to passive heat stress change with the circadian rhythm of internal temperature. Six men had their legs immersed in water at 42 degrees C for 60 min in an ambient temperature of 28 degrees C on four separate days. Experiments were conducted at four different times [06.00 h (morning), 12.00 h (daytime), 18.00 h (evening) and 24.00 h (night)]. We measured oesophageal temperature (Toes), mean body temperature (Tb), local sweating rate (msw) on the forehead, back, forearm and thigh, the densities of activated sweat gland (ASG) on the back, forearm and thigh, and the frequency of sweat expulsion per minute (Fsw) which has been suggested to represent central sudomotor activity. Sweat gland output (SGO) on each site was calculated by dividing msw by ASG. ASG was significantly higher on the forearm than on the back and thigh, and SGO was significantly lower on the forearm than on the back and thigh. However, ASG and SGO did not significantly change over the day. Tb and Toes thresholds for the onset of sweating showed a significant change with both the temperature rhythms at rest prior to each procedure, while the slopes of the relationships Fsw-Tb and msw-Fsw showed no significant difference over the day. We suggest that the circadian variation of sweating response to passive heat stress is regulated by a central sudomotor mechanism rather than by sweat gland function.

摘要

本研究的目的是检验被动热应激下的出汗反应是否随体内温度的昼夜节律而变化。六名男性在环境温度为28摄氏度的条件下,于四个不同日期将双腿浸入42摄氏度的水中60分钟。实验在四个不同时间进行[06:00(早晨)、12:00(白天)、18:00(晚上)和24:00(夜间)]。我们测量了食管温度(Toes)、平均体温(Tb)、前额、背部、前臂和大腿的局部出汗率(msw)、背部、前臂和大腿的激活汗腺密度(ASG)以及每分钟排汗频率(Fsw),Fsw被认为代表中枢发汗运动活动。每个部位的汗腺输出量(SGO)通过将msw除以ASG来计算。前臂的ASG显著高于背部和大腿,而前臂的SGO显著低于背部和大腿。然而,ASG和SGO在一天中没有显著变化。出汗开始时的Tb和Toes阈值随每个程序前静息时的温度节律均有显著变化,而Fsw-Tb和msw-Fsw关系的斜率在一天中无显著差异。我们认为,被动热应激出汗反应的昼夜变化是由中枢发汗运动机制而非汗腺功能调节的。

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