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Second gas effect of N2O on oxygen uptake.

机译:N2O对氧气吸收的第二种气体效应。

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摘要

PURPOSE: The concept of the second gas effect is well known, however, there have been no studies that showed the relationship between alveolar oxygen concentration and arterial oxygen tension (PaO2) after the inhalation of nitrous oxide (N2O) in humans. The purpose of this study was to examine the changes in both end-tidal oxygen fraction (F(ET)O2) and PaO2 after N2O inhalation in patients under general anesthesia. METHODS: Fifteen patients scheduled for elective orthopedic surgery were enrolled in this study. Anesthesia was maintained with the continuous infusion of propofol and with nitrogen (N2) and oxygen (O2) (6 L x min(-1), F1O2, 0.33). In all patients, the lungs were ventilated with a Servo 900C ventilator equipped with a gas mixer for O2, N2O, and N2. After obtaining baseline data, N2 was replaced with N2O maintaining FIO2 constant at 0.33. The changes in fractional concentration of O2, N2O, and N2 were continuously measured using mass spectrometer in a breath-by-breath basis. PaO2 and hemodynamic data were obtained at 1, 5, 10, 30 and 60 min after the start of N2O inhalation. RESULTS: Five minutes after N2O inhalation, F(ET)O2 increased from 0.27+/-0.01 to 0.31+/-0.02 (P<0.01) and PaO2 increased from 172.0+/-22.5 mm Hg to 201.0+/-10.3 mm Hg (P<0.01). These effects produced by N2O were observed for 30 min. CONCLUSIONS: These results confirm the concept of second gas effect of N2O on oxygen uptake in humans and provide evidence that the PaO2 increase correlated with the increase in F(ET)O2 after N2O inhalation.
机译:目的:第二种气体效应的概念是众所周知的,但是,还没有研究表明吸入人体中的一氧化二氮(N2O)后肺泡氧浓度与动脉血氧张力(PaO2)之间的关系。这项研究的目的是检查全麻患者吸入N2O后潮气末氧分数(F(ET)O2)和PaO2的变化。方法:本研究纳入了计划进行选择性骨科手术的15例患者。连续输注异丙酚和氮气(N2)和氧气(O2)(6 L x min(-1),F1O2,0.33)维持麻醉。在所有患者中,使用配备有用于O2,N2O和N2的气体混合器的Servo 900C呼吸机为肺通气。获得基线数据后,将N2替换为N2O,以使FIO2恒定为0.33。使用质谱仪逐个呼吸地连续测量O2,N2O和N2的分数浓度变化。在开始吸入N2O后的1、5、10、30和60分钟获得PaO2和血液动力学数据。结果:吸入N2O后五分钟,F(ET)O2从0.27 +/- 0.01增加到0.31 +/- 0.02(P <0.01),PaO2从172.0 +/- 22.5 mm Hg增加到201.0 +/- 10.3 mm Hg (P <0.01)。在30分钟内观察到了N2O产生的这些影响。结论:这些结果证实了N2O对人的氧气吸收的第二种气体效应的概念,并提供了证据,表明吸入N2O后PaO2的增加与F(ET)O2的增加相关。

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