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静脉血二氧化碳分压升高增强鸟类肺内化学感受器的动态反应。

Increased venous PCO2 enhances dynamic responses of avian intrapulmonary chemoreceptors.

作者信息

Hempleman S C, Bebout D E

机构信息

Department of Medicine, University of California, San Diego, La Jolla 92093-0623.

出版信息

Am J Physiol. 1994 Jan;266(1 Pt 2):R15-9. doi: 10.1152/ajpregu.1994.266.1.R15.

Abstract

We quantified the neural discharge of intrapulmonary chemoreceptors (IPC) innervating the left lungs of anesthetized Pekin ducks. Right and left lungs were separately unidirectionally ventilated. Alternating steps in CO2 concentration (0-6%, 11-s period) were delivered to the left lung under control conditions [mixed venous PCO2, (PVCO2) 43 +/- 4 Torr] and under venous CO2 load conditions (PVCO2 79 +/- 6 Torr). During venous CO2 loading the right lung was ventilated with 10-20% CO2, while the left lung was ventilated with a sufficient flow of gas containing 0% CO2 to maintain normal expired PCO2 (indicated by constant IPC discharge rate). Venous loading increased the peak-to-peak amplitude of the oscillation in IPC discharge by 4.3 +/- 1.8 s-1 (n = 11, P < 0.05), left lung ventilation was increased 2.6-fold, and the IPC step response became more prompt. The mean IPC discharge rate during the CO2 stepping cycle was not significantly affected (11.8 +/- 1.4 during control vs. 10.3 +/- 1.3 s-1 during venous loading). Increased IPC discharge oscillations were due to enhancement of the dynamic overshoot in receptor discharge after the 6-0% downstep in inspired CO2 and to a depression of discharge during 6% inspired CO2. We propose that the phasic enhancement of IPC discharge oscillations during venous CO2 loading may cause feedback inhibition of ventilatory drive.

摘要

我们对支配麻醉北京鸭左肺的肺内化学感受器(IPC)的神经放电进行了量化。右肺和左肺分别进行单向通气。在对照条件下[混合静脉血二氧化碳分压,(PVCO2) 43±4 Torr]和静脉血二氧化碳负荷条件下(PVCO2 79±6 Torr),将二氧化碳浓度的交替阶跃(0 - 6%,11秒周期)施加于左肺。在静脉血二氧化碳负荷期间,右肺用10 - 20%的二氧化碳通气,而左肺用足够流量的含0%二氧化碳的气体通气,以维持正常的呼出二氧化碳分压(由恒定的IPC放电率指示)。静脉血负荷使IPC放电振荡的峰峰值幅度增加了4.3±1.8 s-1(n = 11,P < 0.05),左肺通气增加了2.6倍,并且IPC阶跃反应变得更加迅速。在二氧化碳阶跃周期期间,平均IPC放电率没有受到显著影响(对照期间为11.8±1.4,静脉血负荷期间为10.3±1.3 s-1)。IPC放电振荡增加是由于在吸入二氧化碳从6%降至0%后,感受器放电的动态超调增强以及在吸入6%二氧化碳期间放电受到抑制。我们提出,在静脉血二氧化碳负荷期间,IPC放电振荡的相位增强可能导致对通气驱动的反馈抑制。

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