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运动山羊呼吸蒸发散热的控制

Control of respiratory evaporative heat loss in exercising goats.

作者信息

Mercer J B, Jessen C

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1979 May;46(5):978-83. doi: 10.1152/jappl.1979.46.5.978.

Abstract

Investigations were carried out to determine whether a nonthermal input is involved in the control of respiratory evaporative heat loss (REHL) in exercising goats. Two goats were implanted with hypothalamic perfusion thermodes and three goats were implanted with intravascular heat exchangers to clamp hypothalamic temperature and total body core temperature, respectively. At 30 degrees C air temperature REHL was measured while the animals were resting or walking on a treadmill (3 km.h-1, 5 degrees gradient). When the hypothalamic temperature was clamped between 33.0 and 43.0 degrees C the slopes of the responses relating increased REHL to hypothalamic temperature were similar during rest and exercise. However, the threshold hypothalamic temperatures for the increased REHL responses were lower during exercise than at rest, presumably due to higher extrahypothalamic temperatures. When the body core temperature was clamped between 37.0 and 40.4 degrees C the slopes of the responses relating increased REHL to total body core temperature during exercise showed only minor differences compared to those at rest, none of them conclusively indicating nonthermal influences.

摘要

开展了多项研究,以确定非热输入是否参与运动山羊呼吸蒸发散热(REHL)的控制。给两只山羊植入下丘脑灌注温度传感器,给三只山羊植入血管内热交换器,分别用于钳制下丘脑温度和全身核心温度。在30摄氏度的气温下,测量动物休息或在跑步机上行走(3公里/小时,5度坡度)时的REHL。当下丘脑温度钳制在33.0至43.0摄氏度之间时,休息和运动期间,REHL增加与下丘脑温度之间的反应斜率相似。然而,运动期间REHL增加反应的下丘脑温度阈值低于休息时,这可能是由于下丘脑外温度较高。当全身核心温度钳制在37.0至40.4摄氏度之间时,运动期间REHL增加与全身核心温度之间的反应斜率与休息时相比仅显示出微小差异,均未明确表明存在非热影响。

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