首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Defocused Spatially Offset Raman Spectroscopy in Media of Different Optical Properties for Biomedical Applications Using a Commercial Spatially Offset Raman Spectroscopy Device
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Defocused Spatially Offset Raman Spectroscopy in Media of Different Optical Properties for Biomedical Applications Using a Commercial Spatially Offset Raman Spectroscopy Device

机译:使用商业空间偏移拉曼光谱装置在不同光学性质的介质中离焦空间偏移拉曼光谱法

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In this study, we show how defocused spatially offset Raman spectroscopy (SORS) can be employed to recover chemical information from media of biomedical significance within sealed plastic transfusion and culture bags using a commercial SORS instrument. We demonstrate a simple approach to recover subsurface spectral information through a transparent barrier by optimizing the spatial offset of the defocused beam. The efficiency of the measurements is assessed in terms of the SORS ratio and signal-to-noise ratio (S/N) through a simple manual approach and an ordinary least squares model. By comparing the results for three different biological samples (red blood cell concentrate, pooled red cell supernatant and a suspension of Jurkat cells), we show that there is an optimum value of the offset parameter which yields the maximum S/N depending on the barrier material and optical properties of the ensemble contents. The approach was developed in the context of biomedical applications but is generally applicable to any three-layer system consisting of turbid content between transparent thin plastic barriers (i.e., front and back bag surfaces), particularly where the analyte of interest is dilute or not a strong scatterer.
机译:在这项研究中,我们示出了如何使用商业SORS仪器从密封的塑料输血和培养袋中的生物医学意义中培养的化学信息来恢复离焦空间偏移的拉曼光谱(SOR)。我们通过优化散焦光束的空间偏移来证明通过透明屏障来回收地下光谱信息的简单方法。通过简单的手动方法和普通最小二乘模型,根据SORS比率和信噪比来评估测量的效率。通过比较三种不同的生物样品的结果(红细胞浓缩物,合并的红细胞上清液和Jurkat细胞的悬浮液),我们表明偏移参数的最佳值,这取决于屏障的最大S / N集合内容的材料和光学性质。该方法是在生物医学应用的背景下开发的,但通常适用于任何三层系统,包括透明薄塑性屏障(即前后袋表面)之间的浑浊含量,特别是在稀释的分析物中的情况下或不稀释强散射体。

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