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A novel expiratory circuit for recovery of perfluorocarbon liquid during partial liquid ventilation.

机译:一种用于在部分液体通风期间回收全氟化碳液体的新型呼气回路。

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OBJECTIVE: To determine whether perfluorocarbon liquid can be condensed from gases containing perfluorocarbon vapour and whether the amount recovered varies with background flow rate. DESIGN AND SETTING: Bench-top experimental study in a neonatal laboratory. INTERVENTIONS: The expiratory limb of a standard ventilator circuit set-up was mimicked, with the addition of a chilled water jacket (Liebig) condenser. Perfluorocarbon vapour was passed through the circuit at a number of flow rates. MEASUREMENTS AND RESULTS: Perfluorocarbon vapour was passed through the circuit and the percentage recovery of liquid measured. More than 60% of the perfluorocarbon vapour was recovered at all flow rates (1, 2, 5 and 10 l/min), with significantly higher recovery obtained (up to 74%) at low flow rates (1 l/min). CONCLUSIONS: Using a simple condenser, more than 60% of perfluorocarbon liquid can be recovered without altering the function of an expiratory limb of a ventilator circuit.
机译:目的:确定是否可以从含有全氟化碳蒸气的气体中冷凝出全氟化碳液体,以及回收的量是否随背景流速而变化。设计与设置:在新生儿实验室进行的台式实验研究。干预措施:模拟标准呼吸机回路设置的呼气肢,增加一个冷水套(Liebig)冷凝器。全氟化碳蒸气以多种流速通过回路。测量和结果:使全氟化碳蒸气通过回路,并测量液体的回收率。在所有流速(1、2、5和10 l / min)下,全氟化碳蒸气的回收率均超过60%,而在低流速(1 l / min)下,回收率明显更高(最高74%)。结论:使用简单的冷凝器,可以回收超过60%的全氟化碳液体,而不会改变呼吸机回路的呼气支路功能。

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