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Laser-based absorption spectroscopy as a technique for rapid in-line analysis of respired gas concentrations of O2 and CO2.

机译:基于激光的吸收光谱法作为一种快速在线分析呼吸气体中O2和CO2浓度的技术。

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摘要

The use of sidestream analyzers for respired gas analysis is almost universal. However, they are not ideal for measurements of respiratory gas exchange because the analyses are both temporally dissociated from measurements of respiratory flow and also not generally conducted under the same physical conditions. This study explores the possibility of constructing an all optical, fast response, in-line breath analyzer for oxygen and carbon dioxide. Using direct absorption spectroscopy with a diode laser operating at a wavelength near 2 μm, measurements of expired carbon dioxide concentrations were obtained with an absolute limit of detection of 0.04% at a time resolution of 10 ms. Simultaneously, cavity enhanced absorption spectroscopy at a wavelength near 760 nm was employed to obtain measurements of expired oxygen concentrations with an absolute limit of detection of 0.26% at a time resolution of 10 ms. We conclude that laser-based absorption spectroscopy is a promising technology for in-line analysis of respired carbon dioxide and oxygen concentrations.
机译:使用侧流分析仪进行呼吸气体分析几乎是普遍的。但是,它们对于呼吸气体交换的测量不是理想的,因为分析既在时间上与呼吸流量的测量分离,并且通常也不在相同的物理条件下进行。这项研究探索了构建用于氧气和二氧化碳的全光学,快速响应的在线呼吸分析仪的可能性。使用直接吸收光谱法和在2μm附近工作的二极管激光器,可以以10 ms的时间分辨率以0.04%的绝对检测限测量呼出的二氧化碳浓度。同时,采用腔增强吸收光谱法在760 nm附近的波长下,以10 ms的时间分辨率获得呼出氧浓度的测量值,其绝对检测极限为0.26%。我们得出结论,基于激光的吸收光谱法是一种在线分析呼吸的二氧化碳和氧气浓度的有前途的技术。

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