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Single-pollen analysis by laser-induced breakdown spectroscopy and Raman microscopy

机译:激光诱导击穿光谱和拉曼显微镜的单花粉分析

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摘要

The application of laser-induced breakdown spectroscopy to the analysis of single biological microparticles (bioaerosols) is described, exemplified here for a range of pollens. Spectra were recorded by exposure of the pollen to a single laser pulse from a Nd:YAG laser (λ=1064 nm, E_(p)~30 mJ). The intensities of the single-pulse laser-induced breakdown spectra fluctuated dramatically, but an internal signal calibration procedure was applied that referenced elemental line intensities to the carbon matrix of the sample (represented by molecular bands of CN and C_(2)). This procedure allowed us to determine relative element concentration distributions for the different types of pollen. These pollens exhibited some distinct concentration variations, for both major and minor (trace) elements in the biomatrix, through which ultimately individual pollens might be identified and classified. The same pollen samples were also analyzed by Raman microscopy, which provided molecular compositional data (even with spatial resolution). These data allowed us to distinguish between biological and nonbiological specimens and to obtain additional classification information for the various pollen families, complementing the laser-induced breakdown spectroscopy measurement data.
机译:描述了激光诱导击穿光谱技术在分析单个生物微粒(生物气溶胶)中的应用,此处举例说明了一系列花粉。通过将花粉暴露于Nd:YAG激光的单个激光脉冲(λ= 1064 nm,E_(p)〜30 mJ)来记录光谱。单脉冲激光诱导的击穿光谱的强度剧烈波动,但是应用了内部信号校准程序,该程序将元素线强度参考到样品的碳基质中(用CN和C_(2)的分子带表示)。该程序使我们能够确定不同类型花粉的相对元素浓度分布。这些花粉对生物基质中的主要和次要(痕量)元素均表现出一些不同的浓度变化,最终可以通过这些变化来鉴定和分类各个花粉。还通过拉曼显微镜分析了相同的花粉样品,其提供了分子组成数据(甚至具有空间分辨率)。这些数据使我们能够区分生物学和非生物学标本,并获得各种花粉家族的其他分类信息,以补充激光诱导的击穿光谱测量数据。

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    《Applied optics》 |2003年第30期|共14页
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