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与成熟和衰老相关的散热效应器功能变化。

Maturation- and aging-related changes in heat loss effector function.

作者信息

Inoue Yoshimitsu, Kuwahara Tomoko, Araki Tsutomu

机构信息

Laboratory for Human Performance Research, Osaka International University, 6-21-57 Tohda-cho, Moriguchi, Osaka 570-8555, Japan.

出版信息

J Physiol Anthropol Appl Human Sci. 2004 Nov;23(6):289-94. doi: 10.2114/jpa.23.289.

Abstract

This paper addresses the ways in which heat loss effector functions change with maturation and aging, using data obtained in our laboratory. Prepubertal children have an underdeveloped sweat function compared with young adults; this is compensated by a greater surface area-to-mass ratio and relatively greater heat loss from cutaneous vasodilation on the head and trunk when the air temperature is lower than the skin temperature. As the heat dissipation depends greatly on the evaporation of sweat, the core temperature of prepubertal children is greater than that of young adults owing to the underdevelopment of sweating. In the elderly the heat loss effector function decreases with aging. The decrease may first involve cutaneous vasodilation, then sweat output per gland, and finally active sweat gland density; and it may proceed from the lower limbs to the back of the upper body, the front of the upper body, then the upper limbs and finally to the head.

摘要

本文利用我们实验室获得的数据,探讨了热损失效应功能随成熟和衰老而发生变化的方式。与年轻人相比,青春期前儿童的出汗功能发育不全;当气温低于皮肤温度时,更大的表面积与质量比以及头部和躯干皮肤血管舒张导致的相对更多的热量散失可对此进行补偿。由于散热很大程度上依赖于汗液蒸发,出汗功能发育不全导致青春期前儿童的核心体温高于年轻人。在老年人中,热损失效应功能随衰老而下降。这种下降可能首先涉及皮肤血管舒张,然后是每个腺体的汗液分泌量,最后是活跃汗腺密度;并且可能从下肢开始,向上延伸至上身背部、上身前部,再到上肢,最后到头部。

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