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Development of a new measurement system to detect selectively volatile organic compounds derived from the human body

机译:开发一种新的测量系统,以检测选择性衍生自人体的挥发性有机化合物

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A new concept expired gas measurement system used double cold-trap method was developed. The system could detect selectively volatile organic compound (VOC) derived from the human body. The gas chromatography (GC) profiles of healthy volunteer's expired gas collected by our system were analyzed. As a result, 60 VOCs were detected from the healthy volunteer's expired gas. We examined 14 VOCs among them further, which could be converted to the concentration from the GC profiles. The concentration of almost VOCs decreased when the subjects inspired purified air compared with the atmosphere. On the other hand, isoprene was almost the same. It was strongly suggested that these VOCs were derived from the human body because the concentration of these VOCs in the atmosphere were nearly zero. Expired gas of two sleep apnea syndrome (SAS) patients were analyzed as preliminary study. As a result of the study, the concentration of some VOCs contained in the expired gas of the SAS patients showed higher value than a healthy controls.
机译:开发了一种采用双冷阱法的新概念过期气体测量系统。该系统可以选择性检测源自人体的挥发性有机化合物(VOC)。分析了我们系统收集的健康志愿者的过期气体的气相色谱(GC)曲线。结果,从健康志愿者的呼出气体中检测到60种VOC。我们进一步检查了其中的14种VOC,可以从GC曲线将其转换为浓度。与大气相比,当受试者吸入净化空气时,几乎VOC的浓度降低。另一方面,异戊二烯几乎相同。强烈建议这些VOC源自人体,因为这些VOC在大气中的浓度几乎为零。初步研究了两名睡眠呼吸暂停综合症(SAS)患者的呼气。研究的结果是,SAS患者呼出气体中某些VOC的浓度显示出比健康对照组更高的价值。

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