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选定离子流管(SIFT)——一种用于生物监测的新技术。

The selected ion flow tube (SIFT)--a novel technique for biological monitoring.

作者信息

Spanĕl P, Rolfe P, Rajan B, Smith D

机构信息

Department of Biomedical Engineering and Medical Physics, University of Keele, Hartshill, Stoke-on-Trent, U.K.

出版信息

Ann Occup Hyg. 1996 Dec;40(6):615-26.

PMID:8958769
Abstract

We describe the use of our selected ion flow tube (SIFT) technique for the rapid detection and quantification of trace gases in atmospheric air, with special reference to the analysis of human breath. It is based on the chemical ionization of the breath trace gases to the exclusion of the major breath gases, using 'soft' proton transfer from H3O+ ions. Breath samples can either be introduced into the SIFT from bags or by direct breathing into the apparatus, the advantage of the latter approach being that surface active gases such as ammonia and many organic vapours which adsorb onto bag surfaces can be more accurately quantified. We present examples of the analysis of laboratory air, the breath of a non-smoker and of a smoker taken from bag samples, and illustrate the rapid time response of the technique by showing the time profile of acetone on breath during direct breathing into the apparatus. The current partial pressure sensitivity of our SIFT method is within the range 30 ppb to in excess of 100 ppm, but with further development the device could be made more sensitive, 1 ppb being well within reach. A transportable SIFT device is under development which will have applications in environmental, medical and biological research, health and safety monitoring, and in clinical diagnosis.

摘要

我们描述了使用我们的选择离子流管(SIFT)技术来快速检测和定量大气中的痕量气体,特别提及了对人体呼出气体的分析。该技术基于呼出痕量气体的化学电离,通过H₃O⁺离子的“软”质子转移来排除主要的呼出气体。呼出气体样本既可以从袋子中引入SIFT,也可以直接向仪器中呼气,后一种方法的优点是,诸如氨和许多吸附在袋子表面的有机蒸汽等表面活性气体能够得到更准确的定量。我们展示了对实验室空气、非吸烟者和吸烟者从袋子样本中采集的呼出气体进行分析的示例,并通过展示直接向仪器中呼气时呼出气体中丙酮的时间分布曲线来说明该技术快速的时间响应。我们的SIFT方法目前的分压灵敏度在30 ppb至超过100 ppm的范围内,但随着进一步发展,该设备可以变得更灵敏,达到1 ppb是完全可行的。一种可移动的SIFT设备正在研发中,它将应用于环境、医学和生物学研究、健康与安全监测以及临床诊断。

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