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反复局部加热对汗腺训练的影响。

Effects of sweat gland training by repeated local heating.

作者信息

Ogawa T, Asayama M, Miyagawa T

出版信息

Jpn J Physiol. 1982;32(6):971-81. doi: 10.2170/jjphysiol.32.971.

Abstract

Effects of sweat gland training by daily local heating were examined and its significance in heat acclimatization was evaluated. Training by 2-hr immersion of an arm in hot water of 43 degrees C caused distinct augmentation of sweat gland activity in the trained area, with reduction in the degree of hidromeiosis, when tested by an arm bag collection of sweat. Concentrations of sweat electrolytes also showed definite decreases. The general tendency that Na and Cl concentrations in sweat rise in the course of hidromeiosis was attenuated or even reversed after the training. The sweat test using resistance hygrometry failed to show a marked or consistent increase in sweat rate of the trained area, although an increase was the common case on the dorsum of the hand and the extensor aspect of the forearm. The effect of training appeared in a few days of training, developed progressively with training days and showed a tendency to develop even after 3 weeks of training. The same training in midsummer failed to exert significant effects on sweat gland activity, suggesting that the sweat gland had been naturally trained to a considerable degree by then. On the other hand, training by repeated radiant heating of a local area caused only obscure changes in the activity of sweat glands. The present results reveal that sweat glands can be trained to be resistant to hidromeiosis in a hot-humid environment and that such peripheral changes appear to play a predominant role in augmentation of sweating capacity in the early stage of heat acclimatization.

摘要

研究了通过每日局部加热进行汗腺训练的效果,并评估了其在热适应中的意义。将手臂浸入43摄氏度的热水中2小时进行训练,当通过手臂袋收集汗液进行测试时,训练区域的汗腺活动明显增强,汗少症程度降低。汗液电解质浓度也有明显下降。在汗少症过程中汗液中钠和氯浓度升高的总体趋势在训练后减弱甚至逆转。使用电阻湿度法进行的汗液测试未能显示训练区域的出汗率有明显或持续的增加,尽管在手背和前臂伸侧出汗率增加是常见情况。训练效果在训练几天后出现,随着训练天数逐渐发展,甚至在训练3周后仍有发展趋势。在仲夏进行相同的训练对汗腺活动没有显著影响,这表明到那时汗腺已经在相当程度上自然训练过了。另一方面,通过对局部区域反复进行辐射加热进行训练,只会使汗腺活动发生不明显的变化。目前的结果表明,汗腺可以被训练以抵抗湿热环境中的汗少症,并且这种外周变化似乎在热适应早期出汗能力增强中起主要作用。

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