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Use of a mass spectrometer for direct respiratory gas sampling from the hyperbaric chamber.

机译:使用质谱仪从高压舱中直接呼吸气体采样。

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BACKGROUND: When conducting respiratory gas measurements during hyperbaric chamber research, it is preferable to carry out gas concentration analysis by mass spectrometry. Gas samples for the mass spectrometer are normally taken from a bypass flow exiting the high pressure chamber to the ambient atmosphere. Under these conditions, mixing in the sampling line smoothes the concentration profile, and much of the advantage of low sampling flow is lost. We propose to use a direct sampling method by mass spectrometer that overcomes these deficiencies. METHODS: In the present study, the original high resistance capillary of a QP 9000 mass spectrometer was inserted through the wall of a hyperbaric chamber. Series A: Air and pure nitrogen flowed alternately (1 s each) via the sampling tip of the mass spectrometer. Series B: End expired CO2 from 15 immersed, professional divers exercising at 405 kPa was measured in a screening test for CO2 retention for nitrox diving. RESULTS: There was no difference in the recorded rise time, fall time and plateau reached in the concentration of oxygen at pressures of 101, 202, 303, 405 and 506 kPa. The new sampling method functioned correctly throughout the full-scale experiment, and the recording of end tidal CO2 was more precise than in the conventional method. CONCLUSIONS. Direct sampling of gases from a hyperbaric chamber by the QP 9000 mass spectrometer has many advantages over sampling of the same gases once they are outside the chamber.
机译:背景:在高压舱研究期间进行呼吸气体测量时,最好通过质谱法进行气体浓度分析。质谱仪的气体样品通常从离开高压室到环境大气的旁路流中采集。在这些条件下,采样管线中的混合会使浓度分布变得平滑,并且失去了低采样流量的许多优势。我们建议通过质谱仪使用直接采样方法来克服这些缺陷。方法:在本研究中,将QP 9000质谱仪的原始高电阻毛细管插入高压舱壁。系列A:空气和纯氮气交替(各1 s)通过质谱仪的采样尖端流动。系列B:在15次以405 kPa压力进行运动的专业潜水者中,最终呼出的CO2进行了氮氧化物潜水的CO2保留筛选测试。结果:在101、202、303、405和506 kPa的压力下,记录的上升时间,下降时间和达到稳定的氧气浓度没有差异。新的采样方法在整个规模实验中均能正常运行,并且潮气中二氧化碳的记录比传统方法更为精确。结论。通过QP 9000质谱仪从高压舱直接采样气体,与在舱外将相同气体采样相比,具有许多优势。

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