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气管压力和阻抗作为高频通气期间气体交换的决定因素。

Tracheal pressure and impedance as determinants of gas exchange during high frequency ventilation.

作者信息

Clarke J R, Homer L D, Flynn E T, Bradley M E

出版信息

Respir Physiol. 1987 Apr;68(1):121-36. doi: 10.1016/0034-5687(87)90081-8.

Abstract

This work explores the use of catheter pressure transducers to measure time averaged, mean squared pressure (MSP) in the trachea of anesthetized animals during high frequency ventilation using a prototype Emerson oscillator with a 25 ml stroke volume at 15 and 34 Hz. Tidal volume and MSP were varied by shunting a portion of the ventilator output for the study of the effect of driving pressure on ventilation. A given level of ventilation was accomplished at a lower driving pressure at the lower frequency. Both ventilation as assessed by a modified nitrogen washout procedure and gas exchange were related to MSP and oscillatory frequency by the substitution of MSP/Z2 for alveolar ventilation in the equations of Jaeger et al. (1984). The technique and equations describing it were validated by the prediction of impedance changes resulting from shifts in oscillatory frequency. The calculated impedances matched experimentally measured values found in dogs by other investigators. Catheter pressure transducers are thus shown to be a useful tool for quantifying high frequency ventilation when coupled with a knowledge of respiratory impedance. The technique offers advantages over existing techniques, the most notable being ease of use due to the catheters' exceptional frequency response.

摘要

本研究探讨了在高频通气期间,使用具有25毫升冲程容积、频率分别为15赫兹和34赫兹的艾默生原型振荡器,通过导管压力传感器测量麻醉动物气管内的时间平均均方根压力(MSP)。通过分流一部分呼吸机输出量来改变潮气量和MSP,以研究驱动压力对通气的影响。在较低频率下,以较低的驱动压力即可实现给定水平的通气。通过改良的氮气冲洗程序评估的通气和气体交换,在耶格尔等人(1984年)的方程中,用MSP/Z2替代肺泡通气,从而与MSP和振荡频率相关。描述该技术的方程通过预测振荡频率变化引起的阻抗变化得到了验证。计算出的阻抗与其他研究人员在狗身上实验测量的值相匹配。因此,当结合呼吸阻抗知识时,导管压力传感器被证明是量化高频通气的有用工具。该技术比现有技术具有优势,最显著的是由于导管具有出色的频率响应,使用起来更加简便。

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