首页> 外文期刊>Anesthesia and Analgesia: Journal of the International Anesthesia Research Society >Real-Time Measurement of Xenon Concentration in a Binary Gas Mixture Using a Modified Ultrasonic Time-of-Flight Anesthesia Gas Flowmeter: A Technical Feasibility Study
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Real-Time Measurement of Xenon Concentration in a Binary Gas Mixture Using a Modified Ultrasonic Time-of-Flight Anesthesia Gas Flowmeter: A Technical Feasibility Study

机译:使用改进的超声波飞行时间麻醉器测量器的二元气体混合物中氙浓度的实时测量:技术可行性研究

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BACKGROUND: Xenon (Xe) is an anesthetic gas licensed for use in some countries. Fractional concentrations (%) of gases in a Xe:oxygen (O-2) mixture are typically measured using a thermal conductivity meter and fuel cell, respectively. Speed of sound in such a binary gas mixture is related to fractional concentration, temperature, pressure, and molar masses of the component gases. We therefore performed a study to assess the feasibility of developing a novel single sterilizable device that uses ultrasound time-of-flight to measure both real-time flowmetry and fractional gas concentration of Xe in O-2. METHODS: For the purposes of the feasibility study, we adapted an ultrasonic time-of-flight flowmeter from a conventional anesthetic machine to additionally measure real-time fractional concentration of Xe in O-2. A total of 5095 readings of Xe % were taken in the range 5%-95%, and compared with simultaneous measurements from the gold standard of a commercially available thermal conductivity Xe analyzer. RESULTS: Ultrasonic measurements of Xe (%) showed agreement with thermal conductivity meter measurements, but there was marked discontinuity in the middle of the measurement range. Bland-Altman analysis (95% confidence interval in parentheses) yielded: mean difference (bias) 3.1% (2.9%-3.2%); lower 95% limit of agreement -4.6% (-4.8% to -4.4%); and upper 95% limit of agreement 10.8% (10.5%-11.0%). CONCLUSIONS: The adapted ultrasonic flowmeter estimated Xe (%), but the level of accuracy is insufficient for clinical use. With further work, it may be possible to develop a device to perform both flowmetry and binary gas concentration measurement to a clinically acceptable degree of accuracy.
机译:背景:氙气(XE)是一些国家的麻醉气体许可。 XE中的气体分数(%)分别使用导热仪和燃料电池测量氧气(O-2)混合物。这种二元气体混合物中的声速与组分气体的分数浓度,温度,压力和摩尔质量有关。因此,我们进行了一项研究,以评估开发一种新型单一可杀菌器件的可行性,该装置使用超声飞行时间来测量O-2中Xe的实时流动性和分数气体浓度。方法:出于可行性研究的目的,我们改编了来自传统麻醉机的超声波飞行时间流量计,以另外测量O-2中XE的实时分数浓度。总共5095%的XE%读数在5%-95%的范围内,与商业热导速XE分析仪的金标准的同时测量相比。结果:XE(%)的超声波测量显示与导热仪表测量的一致性,但测量范围的中间有明显的不连续性。 Bland-Altman分析(括号中的95%置信区间)产生:平均差异(偏差)3.1%(2.9%-3.2%);较低95%的协议限额-4.6%(-4.8%至-4.4%);和95%的协议限额为10.8%(10.5%-11.0%)。结论:适应的超声波流量计估计XE(%),但精度水平不足以临床使用。通过进一步的工作,可以开发一种装置,以在临床上可接受的准确度下执行流动性和二元气体浓度测量。

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