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犬高频通气时的吸气与呼气时间比及肺泡通气

Inspiratory-to-expiratory time ratio and alveolar ventilation during high-frequency ventilation in dogs.

作者信息

Yamada Y, Hales C A, Venegas J G

出版信息

J Appl Physiol (1985). 1986 Nov;61(5):1903-7. doi: 10.1152/jappl.1986.61.5.1903.

Abstract

It has been suggested that the increase in inspiratory flow rate caused by a decrease in the inspiratory-to-expiratory time ratio (I:E) at a constant tidal volume (VT) could increase the efficiency of ventilation in high-frequency ventilation (HFV). To test this hypothesis, we studied the effect of changing I:E from 1:1 to 1:4 on steady-state alveolar ventilation (VA) at a given VT and frequency (f) and at a constant mean lung volume (VL). In nine anesthetized, paralyzed, supine dogs, HFV was performed at 3, 6, and 9 Hz with a ventilator that delivered constant inspiratory and expiratory flow rates. Mean airway pressure was adjusted so that VL was maintained at a level equivalent to that of resting FRC. At each f and one of the I:E chosen at random, VT was adjusted to obtain a eucapnic steady state [arterial pressure of CO2 (PaCO2) = 37 +/- 3 Torr]. After 10 min of each HFV, PaCO2, arterial pressure of O2 (PaO2), and CO2 production (VCO2) were measured, and I:E was changed before repeating the run with the same f and VT. VA was calculated from the ratio of VCO2 and PaCO2. We found that the change of I:E from 1:1 to 1:4 had no significant effects on PaCO2, PaO2, and VA at any of the frequencies studied. We conclude, therefore, that the mechanism or mechanisms responsible for gas transport during HFV must be insensitive to the changes in inspiratory and expiratory flow rates over the VT-f range covered in our experiments.

摘要

有人提出,在潮气量(VT)恒定的情况下,吸气与呼气时间比(I:E)降低导致吸气流量增加,可能会提高高频通气(HFV)时的通气效率。为了验证这一假设,我们研究了在给定的VT和频率(f)以及恒定的平均肺容积(VL)下,将I:E从1:1改为1:4对稳态肺泡通气量(VA)的影响。在9只麻醉、瘫痪、仰卧的狗身上,使用能提供恒定吸气和呼气流量的呼吸机,分别以3、6和9Hz的频率进行高频通气。调整平均气道压力,使VL维持在相当于静息功能残气量(FRC)的水平。在每个f以及随机选择的一个I:E下,调整VT以获得正常二氧化碳水平的稳态[动脉血二氧化碳分压(PaCO2)=37±3托]。在每次高频通气10分钟后,测量PaCO2、动脉血氧分压(PaO2)和二氧化碳产生量(VCO2),然后在相同的f和VT下重复实验前改变I:E。VA由VCO2与PaCO2的比值计算得出。我们发现,在研究的任何频率下,将I:E从1:1改为1:4对PaCO2、PaO2和VA均无显著影响。因此,我们得出结论,在我们实验所涵盖的VT - f范围内,高频通气期间负责气体传输的一种或多种机制必定对吸气和呼气流量的变化不敏感。

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