Gavriely N, Solway J, Elad D, Shabtai-Musih Y, Gaver D P, Grotberg J B, Drazen J M
Department of Physiology and Biophysics, Faculty of Medicine, Israel Institute of Technology, Haifa.
J Appl Physiol (1985). 1993 Jun;74(6):3063-7. doi: 10.1152/jappl.1993.74.6.3063.
A catheter for intra-airway sampling of gas concentrations was constructed from concentric polyethylene tubes. The internal tube (0.58 mm ID, 0.91 mm OD) was connected to a gas analyzer while the external tube (1.20 mm ID, 1.75 mm OD) was constantly flushed by air or a calibration gas, except during sampling. Injection and sampling dead spaces were 0.35 and 0.28 ml, respectively. Delay at 4-ml/min sampling rate was 4.0 +/- 0.2 s. The 0-90% step response to a sudden change in gas composition was 0.24 s when connected to a mass spectrometer. This catheter was used to assess tracer gas dispersion during oscillatory flow (1-20 Hz) in a straight long tube. Local concentrations measured through the catheter, after a small bolus of tracer gas was injected through the external tube, compared favorably with direct measurements through needles inserted via the tube wall and with theoretical predictions. The catheter was also used to measure intra-airway gas concentrations in dog airways during spontaneous breathing, conventional mechanical ventilation, high-frequency ventilation, high-frequency vibration ventilation, and constant-flow ventilation. It ws placed by a fiber-optic bronchoscope and used to measure local quasi-steady concentrations of CO2 and local dispersion with the bolus method. The occurrence of catheter clogging with secretions was substantially reduced with flow through the external tube. Transmitting a calibration gas through the external tube facilitated in situ recalibration of the gas analyzer without removing the catheter. The use of this catheter improved the efficiency and accuracy of measurements of gas concentrations inside lung airways.
一种用于气道内气体浓度采样的导管由同心聚乙烯管制成。内管(内径0.58毫米,外径0.91毫米)连接到气体分析仪,而外管(内径1.20毫米,外径1.75毫米)除采样期间外持续用空气或校准气体冲洗。注入死腔和采样死腔分别为0.35毫升和0.28毫升。在4毫升/分钟的采样速率下延迟为4.0±0.2秒。连接到质谱仪时,对气体成分突然变化的0 - 90%阶跃响应为0.24秒。该导管用于评估在直管中振荡流(1 - 20赫兹)期间示踪气体的扩散情况。通过外管注入一小团示踪气体后,通过导管测量的局部浓度与通过管壁插入的针直接测量的值以及理论预测值相比,结果良好。该导管还用于测量狗在自主呼吸、传统机械通气、高频通气、高频振动通气和恒流通气期间气道内的气体浓度。它通过纤维支气管镜放置,并用于用团注法测量二氧化碳的局部准稳态浓度和局部扩散情况。通过外管的流动大大减少了导管被分泌物堵塞的情况。通过外管传输校准气体有助于在不取出导管的情况下对气体分析仪进行原位重新校准。使用这种导管提高了肺气道内气体浓度测量的效率和准确性。