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暴露于一氧化碳性低氧环境的大鼠对环境性低氧或高碳酸血症的通气和代谢反应。

Ventilatory and metabolic responses to ambient hypoxia or hypercapnia in rats exposed to CO hypoxia.

作者信息

Gautier H, Murariu C, Bonora M

机构信息

Atelier de Physiologie Respiratoire, Faculté de Médecine Saint-Antoine, 75012 Paris, France.

出版信息

J Appl Physiol (1985). 1997 Jul;83(1):253-61. doi: 10.1152/jappl.1997.83.1.253.

Abstract

We have investigated at ambient temperatures (Tam) of 25 and 5 degrees C the effects of ambient hypoxia (Hxam; fractional inspired O2 = 0.14) and hypercapnia (fractional inspired CO2 = 0.04) on ventilation (V), O2 uptake (VO2), and colonic temperature (Tc) in 12 conscious rats before and after carotid body denervation (CBD). The rats were concomitantly exposed to CO hypoxia (HxCO; fractional inspired CO = 0.03-0.05%), which decreases arterial O2 saturation by approximately 25-40%. The results demonstrate the following. 1) At Tam of 5 degrees C, in both intact and CBD rats, V/VO2 is larger when Hxam or CO2 is associated with HxCO than with normoxia. At Tam of 25 degrees C, this is also the case except for CO2 in CBD rats. 2) At Tam of 5 degrees C, the changes in VO2 and Tc seem to result from additive effects of the separate changes induced by Hxam, CO2, and HxCO. It is concluded that, in conscious rats, central hypoxia does not depress respiratory activity. On the contrary, particularly when VO2 is augmented during a cold stress, both V/VO2 during HxCO and the ventilatory responses to Hxam and CO2 are increased. The mechanisms involved in this relative hyperventilation are likely to involve diencephalic integrative structures.

摘要

我们在25℃和5℃的环境温度下,研究了环境性低氧(Hxam;吸入氧分数=0.14)和高碳酸血症(吸入二氧化碳分数=0.04)对12只清醒大鼠在颈动脉体去神经支配(CBD)前后的通气(V)、氧摄取(VO2)和结肠温度(Tc)的影响。这些大鼠同时暴露于一氧化碳低氧(HxCO;吸入一氧化碳分数=0.03 - 0.05%),这会使动脉血氧饱和度降低约25 - 40%。结果表明如下:1)在5℃的环境温度下,无论是完整大鼠还是CBD大鼠,当Hxam或二氧化碳与HxCO同时存在时,V/VO2比与常氧时更大。在25℃的环境温度下,除了CBD大鼠中的二氧化碳情况外,也是如此。2)在5℃的环境温度下,VO2和Tc的变化似乎是由Hxam、二氧化碳和HxCO分别引起的变化的累加效应导致的。得出的结论是,在清醒大鼠中,中枢性低氧不会抑制呼吸活动。相反,特别是在冷应激期间VO2增加时,HxCO期间的V/VO2以及对Hxam和二氧化碳的通气反应都会增加。这种相对过度通气所涉及的机制可能涉及间脑整合结构。

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