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清醒大鼠的代谢-通气相互作用:缺氧和环境温度的影响

Metabolic-ventilatory interaction in conscious rats: effect of hypoxia and ambient temperature.

作者信息

Saiki C, Matsuoka T, Mortola J P

机构信息

Department of Physiology, McGill University, Montreal, Quebec, Canada.

出版信息

J Appl Physiol (1985). 1994 Apr;76(4):1594-9. doi: 10.1152/jappl.1994.76.4.1594.

Abstract

Previous studies have indicated that the hypometabolic response to hypoxia depends on ambient temperature (Ta), being more pronounced in the cold. If metabolic rate were an important contributor to the level of ventilation (VE), the magnitude of the hyperpneic response to hypoxia should also depend on Ta. We tested this hypothesis on adult conscious male rats. In normoxia, a drop in Ta from 25 to 10 degrees C increased O2 consumption and CO2 production (VO2 and VCO2, respectively, measured by an open-flow technique) and VE (measured with the barometric method) by 80 and 60%, respectively, with no changes in blood gases. At both Ta, hypoxia (10% inspired O2, 33-35 Torr arterial PO2) induced the same degree of hyperventilation, i.e., the same drop in arterial PCO2 (about -13 Torr). The hyperventilation at 25 degrees C Ta was achieved exclusively by an increase in VE, whereas at 10 degrees C Ta the hyperpnea was minimal (+15%) and accompanied by a drop (-30%) in VO2 and VCO2. Diaphragmatic electromyograms confirmed the VE results. Changes in blood pressure were similar at both Ta. Addition of 3% CO2 to the inspired air further increased VE, indicating that the hypoxic rat was not breathing at its maximal VE at either Ta. We conclude that, in the rat, changes in metabolic rate play an important role in the VE response to hypoxia and that Ta influences the response because of its effect on the degree of hypoxic hypometabolism.

摘要

先前的研究表明,对缺氧的低代谢反应取决于环境温度(Ta),在寒冷环境中更为明显。如果代谢率是通气水平(VE)的一个重要影响因素,那么对缺氧的呼吸增强反应程度也应该取决于Ta。我们在成年雄性清醒大鼠身上验证了这一假设。在常氧条件下,Ta从25℃降至10℃时,氧气消耗量和二氧化碳产生量(分别通过开放流动技术测量的VO2和VCO2)以及VE(通过气压法测量)分别增加了80%和60%,而血气没有变化。在这两个Ta条件下,缺氧(吸入氧气浓度为10%,动脉血氧分压为33 - 35 Torr)均引起相同程度的通气增强,即动脉血二氧化碳分压下降相同幅度(约 -13 Torr)。在25℃ Ta时,通气增强完全通过VE增加实现,而在10℃ Ta时,呼吸增强最小(+15%),同时VO2和VCO2下降(-30%)。膈肌肌电图证实了VE的结果。在两个Ta条件下,血压变化相似。向吸入空气中添加3%二氧化碳进一步增加了VE,表明在任何一个Ta条件下,缺氧大鼠都没有以其最大VE进行呼吸。我们得出结论,在大鼠中,代谢率的变化在对缺氧的VE反应中起重要作用,并且Ta因其对缺氧性低代谢程度的影响而影响该反应。

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