Changes in the VI-VCO2 relationship during exercise in goats: role of carotid bodies.

G S Mitchell, C A Smith, J A Dempsey
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引用次数: 26

Abstract

To assess the role of carotid bodies in modulating the ventilation-CO2 production relationship, steady-state responses to mild exercise were determined in goats following several experimental manipulations that led to chronic changes in resting ventilation and arterial blood gases. The experimental conditions were 1) control, 2) whole body serotonin depletion (induced by p-chlorophenylalanine, 100 mg/kg), 3) carotid body denervation (CBX), and 4) serotonin depletion with CBX. Resting values of arterial CO2 pressure (Pco2) ranged from 32 to 48 Torr. In each condition, arterial Pco2 was regulated to a similar degree in exercise due to changes in the slope of the ventilation-CO2 production relationship (delta Vi/delta Vco2) in accordance with the requirements of gas exchange. delta Vi/delta Vco2 increased with serotonin depletion both before and after CBX. The principal component of ventilation contributing to changes in delta Vi/delta Vco2 was tidal volume. These results suggest a basic property of the ventilatory control system whereby enhanced ventilatory activity at rest is associated with an increased ventilatory response to exercise via a mechanism that does not require peripheral chemoreceptors.

山羊运动时VI-VCO2关系的变化:颈动脉体的作用。
为了评估颈动脉小体在调节通气-二氧化碳产生关系中的作用,在山羊进行了几次实验操作后,确定了对轻度运动的稳态反应,这些实验操作导致静息通气和动脉血气的慢性变化。实验条件为:1)对照,2)全身血清素耗竭(对氯苯丙氨酸,100 mg/kg诱导),3)颈动脉体去神经支配(CBX), 4)血清素耗竭伴CBX。动脉CO2压(Pco2)静息值为32 ~ 48 Torr。在每种情况下,由于根据气体交换的要求,通气- co2生成关系(δ Vi/ δ Vco2)的斜率发生变化,动脉Pco2在运动中受到相似程度的调节。在CBX前后,δ Vi/ δ Vco2随血清素耗竭而升高。通气对δ Vi/ δ Vco2变化的主要影响因素是潮气量。这些结果表明了通气控制系统的一个基本特性,即休息时通气活动的增强与运动时通气反应的增加有关,其机制不需要外周化学感受器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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