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高频振荡通气期间主流二氧化碳监测仪的台架试验评估

Bench test assessment of mainstream capnography during high frequency oscillatory ventilation.

作者信息

Hartdorff Caroline M, van Heerde Marc, Markhorst Dick G

机构信息

Pediatric Intensive Care Unit, VU University Medical Center, PO BOX 7057, 1007 MB, Amsterdam, The Netherlands.

出版信息

J Clin Monit Comput. 2014 Feb;28(1):63-6. doi: 10.1007/s10877-013-9495-9. Epub 2013 Aug 23.

Abstract

To assess the feasibility, stability and predictability of pCO2 measurement (PETCO2) using a main stream capnograph in a high frequency oscillatory ventilation circuit. A commercially available capnograph was mounted into a high frequency oscillatory ventilator patient circuit, adjustable CO2 flow was introduced into an artificial lung and the output of the CO2 sensor assessed under varying ventilator settings. Influence of oxygen content, pressures, heat and moisture were recorded. A linear relationship between CO2 flow rate and PETCO2 was found. Varying ventilator settings influenced the measurements, but the results for PETCO2 remained within a range of 1.5 mmHg above or under then mean measurement value. Measurements remained stable despite humidification, heat, pressure amplitudes or mean airway pressure changes. From this bench test, we conclude it is feasible to measure PETCO2 using a main stream capnograph during high frequency oscillatory conditions, these measurements were stable during the experiment. Changes in CO2 production or output can be detected. The system may prove to be of clinical value, but further in vivo measurements are warranted.

摘要

评估在高频振荡通气回路中使用主流二氧化碳监测仪测量呼气末二氧化碳分压(PETCO2)的可行性、稳定性和可预测性。将一台市售的二氧化碳监测仪安装到高频振荡呼吸机的患者回路中,将可调节的二氧化碳气流引入人工肺,并在不同的呼吸机设置下评估二氧化碳传感器的输出。记录了氧气含量、压力、热量和湿度的影响。发现二氧化碳流速与PETCO2之间存在线性关系。不同的呼吸机设置会影响测量结果,但PETCO2的结果仍在平均测量值上下1.5 mmHg的范围内。尽管有加湿、加热、压力幅度或平均气道压力变化,测量结果仍保持稳定。从这个实验台测试中,我们得出结论,在高频振荡条件下使用主流二氧化碳监测仪测量PETCO2是可行的,这些测量在实验过程中是稳定的。可以检测到二氧化碳产生或输出的变化。该系统可能具有临床价值,但需要进一步进行体内测量。

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