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清醒犬暴露于高温和二氧化碳环境下的通气与酸碱平衡

Ventilation and acid-base balance in awake dogs exposed to heat and CO2.

作者信息

Maskrey M, Jennings D B

出版信息

J Appl Physiol (1985). 1985 Feb;58(2):549-57. doi: 10.1152/jappl.1985.58.2.549.

Abstract

Some awake quiet dogs pant at cool ambient temperature (Ta) and some do not pant even when acutely exposed to heat. The purpose of the study was to determine whether this puzzling variability in respiratory behavior diminished during prolonged heat. The contributions of thermal and CO2 drives to respiratory adaptations were also examined. Five awake dogs acclimated to 20 degrees C were studied before and 2 and 48 h following exposure to 30-31 degrees C. Rectal temperature did not change; the important thermal stimulus, even at 48 h, appeared to be the increase in peripheral temperature. Variability between nonpanting and panting persisted over 48 h. On the average, ventilation (VE) doubled during heat, largely due to increased dead space ventilation. Nonpanting dogs at cool Ta decreased the threshold of the ventilatory response to CO2. A panting dog at cool Ta changed its slope of the ventilatory response from negative to positive. During hypercapnia in acute heat, ventilatory pattern changed so that frequency increased and tidal volume decreased for a given VE. By 48 h of heat, the ventilatory response to CO2 returned to control in only two dogs, but the ventilatory pattern during hypercapnia returned to control in four dogs. Since thermal stimuli remained unchanged at 48 h, adaptations of respiratory control may have been related to progressive adjustments of strong ions and acid-base balance.

摘要

一些清醒安静的狗在凉爽的环境温度(Ta)下会喘气,而一些狗即使在急性受热时也不会喘气。本研究的目的是确定这种呼吸行为中令人困惑的变异性在长时间受热期间是否会减弱。还研究了热驱动和二氧化碳驱动对呼吸适应的作用。对五只适应20摄氏度的清醒狗在暴露于30 - 31摄氏度之前以及之后2小时和48小时进行了研究。直肠温度没有变化;即使在48小时时,重要的热刺激似乎也是外周温度的升高。不喘气和喘气之间的变异性在48小时内持续存在。平均而言,受热期间通气量(VE)增加了一倍,这主要是由于无效腔通气增加所致。在凉爽Ta下不喘气的狗降低了对二氧化碳通气反应的阈值。在凉爽Ta下喘气的狗将其通气反应的斜率从负变为正。在急性受热期间的高碳酸血症时,通气模式发生改变,以至于在给定的VE下频率增加而潮气量减少。到受热48小时时,只有两只狗对二氧化碳的通气反应恢复到对照水平,但在四只狗中高碳酸血症期间的通气模式恢复到对照水平。由于在48小时时热刺激保持不变,呼吸控制的适应可能与强离子和酸碱平衡的逐步调整有关。

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