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间歇性热负荷适应大鼠的热损失反应。

Heat loss responses in rats acclimated to heat loaded intermittently.

作者信息

Shido O, Nagasaka T

机构信息

Department of Physiology, School of Medicine, Kanazawa University, Japan.

出版信息

J Appl Physiol (1985). 1990 Jan;68(1):66-70. doi: 10.1152/jappl.1990.68.1.66.

DOI:10.1152/jappl.1990.68.1.66
PMID:2312489
Abstract

The present study examined the heat loss response of heat-acclimated rats to direct body heating with an intraperitoneal heater or to indirect warming by elevating the ambient temperature (Ta). The heat acclimation of the rats was attained through exposure to Ta of 33 or 36 degrees C for 5 h daily during 15 consecutive days. Control rats were kept at Ta of 24 degrees C for the same acclimation period. Heat acclimation lowered the body core temperature at Ta of 24 degrees C, and the core temperature level was lowered as acclimation temperature increased. When heat was applied by direct body heating, the threshold hypothalamic temperature (Thy) for the tail skin vasodilation was also lower in heat-acclimated rats than in the control rats. However, the amount of increase in Thy from the resting level to the threshold was the same in all three groups. When heat was applied by indirect warming, threshold Thy was slightly higher in heat-acclimated than in control rats. The amount of increase in Thy from the resting level to the threshold was significantly greater in heat-acclimated rats. In addition, Ta and the skin temperature at the onset of skin vasodilation were significantly higher in heat-acclimated rats. The results indicate that heat-acclimated rats were less sensitive to the increase in skin temperature in terms of threshold Thy. The gain constant of nonevaporative heat loss response was assessed by plotting total thermal conductance against Thy.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究检测了热适应大鼠对通过腹腔加热器直接加热身体或通过升高环境温度(Ta)进行间接升温的热损失反应。大鼠的热适应是通过在连续15天内每天暴露于33或36摄氏度的Ta环境中5小时来实现的。对照大鼠在相同的适应期内饲养在24摄氏度的Ta环境中。热适应降低了24摄氏度Ta环境下的体核温度,且随着适应温度的升高,核温度水平降低。当通过直接身体加热施加热量时,热适应大鼠尾巴皮肤血管舒张的下丘脑阈值温度(Thy)也低于对照大鼠。然而,所有三组中Thy从静息水平升高到阈值的增加量是相同的。当通过间接升温施加热量时,热适应大鼠的阈值Thy略高于对照大鼠。热适应大鼠中Thy从静息水平升高到阈值的增加量显著更大。此外,热适应大鼠在皮肤血管舒张开始时的Ta和皮肤温度显著更高。结果表明,就阈值Thy而言,热适应大鼠对皮肤温度升高的敏感性较低。通过绘制总热传导率与Thy的关系曲线来评估非蒸发热损失反应的增益常数。(摘要截断于250字)

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