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猫在二氧化碳重复呼吸过程中膈神经活动和闭塞压的变化

Phrenic nerve activity and occlusion pressure changes during CO2 rebreathing in cats.

作者信息

Evanich M J, Lopata M, Lourenço R V

出版信息

J Appl Physiol. 1976 Oct;41(4):536-43. doi: 10.1152/jappl.1976.41.4.536.

Abstract

Changes in phrenic nerve activity, quantified as a moving time average, PNG(t), were characterized during complete airway occlusion at functional residual capacity (FRC) and compared to simultaneously occurring changes in intratracheal pressure. In anesthetized cats breathing room air and during CO2 breathing, PNG(t) during occlusion was the same as that found during unobstructed breathing until it reached a value approximately corresponding to that at peak inspiration in the preceding unoccluded breath, the rate of change of PNG(t) usually remained the same but in a few cases (2 out of 11) increased. When intratracheal occlusion pressure was plotted as a function of PNG(t), both while breathing room air and during CO2 rebreathing, an approximately linear relationship was obtained. Thus, changes in intratracheas occlusion pressure obtained at FRC parallel changes in phrenic motor nerve activity. Quantification of electrical activity of respiratory nerves as a moving time average provides a means of characterizing changes in the average level of electrical activity during an inspiratory effort.

摘要

将膈神经活动以移动时间平均值PNG(t)进行量化,在功能残气量(FRC)时完全气道阻塞期间对其特征进行了描述,并与气管内压力同时发生的变化进行了比较。在吸入空气和吸入二氧化碳的麻醉猫中,阻塞期间的PNG(t)与通畅呼吸时相同,直到达到约相当于前一次未阻塞呼吸中吸气峰值时的值,PNG(t)的变化率通常保持不变,但在少数情况下(11例中有2例)增加。当绘制气管阻塞压力与PNG(t)的函数关系图时,无论是在吸入空气还是重复吸入二氧化碳时,都得到了近似线性关系。因此,在FRC时获得的气管阻塞压力变化与膈运动神经活动的变化平行。将呼吸神经的电活动以移动时间平均值进行量化,提供了一种描述吸气过程中电活动平均水平变化特征的方法。

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