Yamazaki Fumio, Ikuta Tomoya, Sone Ryoko
Department of Clinical Pathophysiology, School of Health Sciences, University of Occupational and Environmental Health, Japan.
J UOEH. 2007 Dec 1;29(4):431-8. doi: 10.7888/juoeh.29.431.
The purpose of this study was to examine changes in the control of sweating by heat acclimation by using frequency of sweat expulsion (Fsw), an index of central sudomotor activity. Eight healthy young volunteers underwent a six-day heat acclimation program [a total of 80-min exercise at 50% peak rate of oxygen consumption in the heat (36 degrees C)]. In the days before and after the heat acclimation program, we examined the local sweating rate (SR) at the chest and forearm, Fsw and esophageal temperature (Tes) during whole body heating using a water-perfused suit. Heat acclimation decreased (P < 0.01) the Tes thresholds for initiation of chest and forearm sweating. Heat acclimation did not change the slopes of the SR at either site or Fsw versus Tes during heating, but shifted the slopes to a lower Tes. Heat acclimation did not change the slopes of the SR at either site versus Fsw, and the SR values at a given Fsw were similar between before and after heat acclimation. These findings suggest that short-term heat acclimation modulates central sudomotor mechanisms, decreasing the temperature threshold for sweating. We did not find a significant change in the peripheral mechanism for sweating by the heat acclimation program.
本研究的目的是通过使用汗液排出频率(Fsw)(一种中枢发汗运动活性指标)来检测热适应对出汗控制的影响。八名健康的年轻志愿者参加了一项为期六天的热适应计划[在高温(36摄氏度)下以50%的峰值耗氧率进行总共80分钟的运动]。在热适应计划前后,我们使用水灌注服在全身加热过程中检测了胸部和前臂的局部出汗率(SR)、Fsw和食管温度(Tes)。热适应降低了(P < 0.01)胸部和前臂开始出汗的Tes阈值。热适应并未改变加热过程中任一部位的SR斜率或SR与Tes之间的斜率,但将斜率移至较低的Tes。热适应并未改变任一部位的SR与Fsw之间的斜率,且在给定Fsw时,热适应前后的SR值相似。这些发现表明,短期热适应调节中枢发汗运动机制,降低出汗的温度阈值。我们未发现热适应计划对出汗外周机制有显著影响。