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Potential for portal detection of human chemical and biological contamination

机译:人体化学和生物污染的门户检测潜力

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The walk-through metal-detection portal is a paradigm of non-intrusive passenger screening in aviation security. Modern explosive detection portals based on this paradigm will soon appear in airports. This paper suggests that the airborne trace detection technology developed for that purpose can also be adapted to human chemical and biological contamination. The waste heat of the human body produces a rising warm-air sheath of 50-80 liters/see known as the "human thermal plume." Contained within this plume are hundreds of bioeffluents from perspiration and breath, and millions of skin flakes. Since early medicine, the airborne human scent was used in the diagnosis of disease. Recent examples also include toxicity and substance abuse, but this approach has never been quantified. The appearance of new bioeffluents or subtle changes in the steady-state may signal the onset of a chemical/biological attack. Portal sampling of the human thermal plume is suggested, followed by a pre-concentration step and the detection of the attacking agent or the early human response. The ability to detect nanogram levels of explosive trace contamination this way was already demonstrated. Key advantages of the portal approach are its rapidity and non-intrusiveness, and the advantage that it does not require the traditional bodily fluid or tissue sampling.
机译:步行式金属检测门户是航空安全中的非侵入式乘客筛选的范式。基于此范例的现代爆炸检测门户将很快出现在机场。本文表明,为此目的开发的空中痕量检测技术也可以适应人类化学和生物污染。人体的废热产生50-80升/看到称为“人体热羽流”的升温暖鞘。在这种情况下含有汗水和呼吸的数百种生物倍数,以及数百万个皮肤薄片。自早期药物以来,空气中的人类气味被用于诊断疾病。最近的例子还包括毒性和药物滥用,但这种方法从未被量化。新的生物倍数或稳态的微妙变化的外观可能会发出化学/生物攻击的发生。建议人体热羽流的门砌式取样,然后进行预浓缩步骤和检测攻击剂或早期人的反应。通过这种方式检测爆炸性痕量污染的纳米线水平的能力已经证明。门户方法的主要优点是其快速和非侵入性,并且它不需要传统的体液或组织采样的优势。

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