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运动犬呼吸蒸发散热的热调节

Thermal control of respiratory evaporative heat loss in exercising dogs.

作者信息

Mercer J B, Jessen C

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1980 Dec;49(6):979-84. doi: 10.1152/jappl.1980.49.6.979.

Abstract

Experiments were carried out to determine whether respiratory evaporative heat loss (REHL) in exercising dogs is entirely under thermal control or whether a nonthermal input is additionally involved. To determine body core thermosensitivity, hypothalamic perfusion thermodes and intravascular heat exchanges were chronically implanted in the animals. This allowed the temperature of these two areas to be independently manipulated. At 30 degrees C air temperature, REHL was measured in three dogs during rest or while running on a treadmill (6 km . h-1, 0 degree gradient). During exercise, the threshold temperature was lowered by 9 degrees C, and the slope of the heat-loss response was reduced to one-third as compared with rest when hypothalamic temperature alone was clamped at various levels between 30 degrees and 42 degrees C. However, when extrahypothalamic body core temperature was additionally clamped, the decrease in threshold during exercise was reduced to 0.43 degrees C, while the slope of the response was identical to that during rest. The results suggest that by taking account of total body core thermosensitivity, instead of hypothalamic thermosensitivity, the alleged role of a nonthermal input is greatly reduced. In addition, the results showed that the major pat of central thermosensitivity must be attributed to the extrahypothalamic body core.

摘要

开展了实验,以确定运动犬的呼吸蒸发散热(REHL)是否完全受温度控制,或者是否还涉及非温度输入。为了确定体核温度敏感性,在动物体内长期植入下丘脑灌注热探头和血管内热交换装置。这使得这两个区域的温度能够被独立调节。在30摄氏度的气温下,对三只犬在休息时或在跑步机上跑步(6千米/小时,0度坡度)期间的呼吸蒸发散热进行了测量。在运动期间,当仅将下丘脑温度在30摄氏度至42摄氏度之间的不同水平钳定时,与休息时相比,阈值温度降低了9摄氏度,散热反应的斜率降低至三分之一。然而,当额外钳定下丘脑外体核温度时,运动期间阈值的降低减少至0.43摄氏度,而反应的斜率与休息时相同。结果表明,考虑到整体体核温度敏感性而非下丘脑温度敏感性,非温度输入的所谓作用会大大降低。此外,结果表明,中枢温度敏感性的主要部分必须归因于下丘脑外体核。

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