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肺泡二氧化碳突然降低后膈神经活动的动态变化分析

Analysis of dynamic change in phrenic nerve activity following a sudden decrease in alveolar carbon dioxide.

作者信息

Natsui T, Yamazaki T, Kuwana S

出版信息

Jpn J Physiol. 1980;30(3):333-44. doi: 10.2170/jjphysiol.30.333.

Abstract

The effects of a sudden decrease in alveolar CO2 concentration (FCO2) on phrenic nerve activity (PNA) were studied in anesthetized and paralzyed cats. The vago-sympathetic and carotid sinus nerves were sectioned. The peak of integrated PNA was used as an index of the central inspiratory activity. 1) FCO2 decreased immediately and curvilinearly after hyperventilation. However, PNA did not change during the initial period of hyperventilation. After this time delay (Dt), the PNA began to decrease linearly over a certain period and finally disappeared. Toff, the time from the onset of hyperventilation to the disappearance of PNA, was in the range of 30-250 sec. This was related to both the level of FCO2 in a control period and the rate of decrease in FCO2 during hyperventilation, but Dt was mostly independent of these values. Mean (with SD) Dt was 10.68 +/- 7.01 sec (n = 68, from 6 cats). 2) VCO2, the quantity of CO2 eliminated through the lung during Toff, was measured in each experimental run. The VCO2 was directly proportional to the level of control FCO2 and, at a given level of control FCO2, was almost identical, irrespective of the different rates of decrease in FCO2. 3) We concluded that Dt is the time required for a change in the hydrogen ion concentration, [H+], in the brain interstitial fluids bathing the central chemosensitive structures, and that the central inspiratory activity, in the absence of the peripheral chemoreceptors, will be a single function of the [H+] in these fluids.

摘要

在麻醉和麻痹的猫身上研究了肺泡二氧化碳浓度(FCO2)突然降低对膈神经活动(PNA)的影响。切断了迷走交感神经和颈动脉窦神经。综合PNA的峰值用作中枢吸气活动的指标。1)过度通气后FCO2立即呈曲线下降。然而,在过度通气的初始阶段PNA没有变化。经过这段延迟时间(Dt)后,PNA在一定时间内开始线性下降并最终消失。Toff,即从过度通气开始到PNA消失的时间,在30 - 250秒范围内。这与对照期的FCO2水平和过度通气期间FCO2的下降速率都有关,但Dt大多与这些值无关。平均(标准差)Dt为10.68 +/- 7.01秒(n = 68,来自6只猫)。2)在每次实验中测量了Toff期间通过肺排出的二氧化碳量VCO2。VCO2与对照FCO2水平成正比,并且在给定的对照FCO2水平下,无论FCO2下降速率如何,几乎相同。3)我们得出结论,Dt是脑间质液中氢离子浓度[H +]发生变化所需的时间,脑间质液围绕着中枢化学敏感结构,并且在没有外周化学感受器的情况下,中枢吸气活动将是这些液体中[H +]的单一函数。

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