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使用激光诱导荧光对生物制剂进行远距离检测——294纳米和355纳米激发波长的比较

Standoff detection of biological agents using laser induced fluorescence-a comparison of 294 nm and 355 nm excitation wavelengths.

作者信息

Farsund Oystein, Rustad Gunnar, Skogan Gunnar

机构信息

FFI (Norwegian Defence Research Establishment), Instituttveien 20, Kjeller, NO-2007, Norway.

出版信息

Biomed Opt Express. 2012 Nov 1;3(11):2964-75. doi: 10.1364/BOE.3.002964. Epub 2012 Oct 24.

Abstract

Standoff detection measuring the fluorescence spectra of seven different biological agents excited by 294 nm as well as 355 nm wavelength laser pulses has been undertaken. The biological warfare agent simulants were released in a semi-closed aerosol chamber at 210 m standoff distance and excited by light at either of the two wavelengths using the same instrument. Significant differences in several of the agents' fluorescence response were seen at the two wavelengths. The anthrax simulants' fluorescence responses were almost an order of magnitude stronger at the shorter wavelength excitation. However, most importantly, the fluorescence spectra were significantly more dissimilar at 294 nm than at 355 nm excitation with ~7 nm spectral resolution. This indicates that classification of the substances should be possible with a lower error rate for standoff detection using 294 nm rather than 355 nm excitation wavelength, or even better, utilizing both.

摘要

已开展了远距离探测,测量了由294纳米以及355纳米波长激光脉冲激发的七种不同生物制剂的荧光光谱。生物战剂模拟物在210米的远距离处释放到一个半封闭的气溶胶室中,并使用同一仪器由两种波长之一的光进行激发。在这两种波长下,几种制剂的荧光响应存在显著差异。炭疽模拟物在较短波长激发下的荧光响应几乎强一个数量级。然而,最重要的是,在294纳米激发下,荧光光谱的差异比在355纳米激发下显著得多,光谱分辨率约为7纳米。这表明,使用294纳米而非355纳米激发波长进行远距离探测,甚至更好的是同时使用这两种波长,应该能够以更低的错误率对物质进行分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aef/3493216/e492cb21bc2b/boe-3-11-2964-g001.jpg

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