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清醒大鼠冷暴露期间对二氧化碳和低氧的通气反应

Ventilatory response to CO2 and hypoxia during cold exposure in awake rats.

作者信息

Gautier H, Bonora M

机构信息

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

出版信息

Respir Physiol. 1995 Jan;99(1):105-12. doi: 10.1016/0034-5687(94)00081-a.

Abstract

Recently, we have described the effects of hypoxia and of hypercapnia on the metabolic (VO2) and ventilatory responses to cold in unanesthetized intact and carotid body-denervated (CBD) rats (Gautier et al., J. Appl. Physiol. 73: 847-854, 1992 and 75: 2570-2579, 1993). In the present paper, we have reanalyzed the above results for a more detailed study of the interactions of hypoxia (FIO2 = 0.12), hypercapnia (FICO2 = 0.04) and changes in VO2 with the ventilatory control. The results show that: (1) Compared to normoxia, in hypoxia increments in V and VT are proportional to VO2 whereas in hypercapnia increments in ventilation (V) and tidal volume (VT) are independent of VO2. In both hypoxia and hypercapnia, increases in respiratory frequency (fR) are independent of VO2; and (2) Interactions of hypoxia, hypercapnia and VO2 with control of V persist in CBD rats but, for a given VO2, V, VT and fR are lower than in intact rats. These interactions are essentially similar to those observed during muscular exercise performed in normoxia, hypoxia or hypercapnia. It is suggested that during cold exposure or muscular exercise, resulting both in increased VO2, there are common integrative structures probably located in the hypothalamus which are involved in the control of breathing.

摘要

最近,我们描述了缺氧和高碳酸血症对未麻醉的完整大鼠以及颈动脉体去神经支配(CBD)大鼠对寒冷的代谢(VO2)和通气反应的影响(Gautier等人,《应用生理学杂志》73: 847 - 854,1992年和75: 2570 - 2579,1993年)。在本文中,我们重新分析了上述结果,以便更详细地研究缺氧(FIO2 = 0.12)、高碳酸血症(FICO2 = 0.04)以及VO2变化与通气控制之间的相互作用。结果表明:(1)与常氧相比,在缺氧状态下,V和VT的增加与VO2成比例,而在高碳酸血症状态下,通气量(V)和潮气量(VT)的增加与VO2无关。在缺氧和高碳酸血症状态下,呼吸频率(fR)的增加均与VO2无关;(2)缺氧、高碳酸血症和VO2与V控制之间的相互作用在CBD大鼠中持续存在,但对于给定的VO2,V、VT和fR低于完整大鼠。这些相互作用与在常氧、缺氧或高碳酸血症状态下进行肌肉运动时观察到的相互作用基本相似。有人提出,在寒冷暴露或肌肉运动期间,两者都会导致VO2增加,可能存在共同的整合结构,可能位于下丘脑,参与呼吸控制。

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