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Clinical probe utilizing surface enhanced Raman scattering

机译:利用表面增强拉曼散射的临床探针

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摘要

Conventional Raman scattering is a well-known technique for detecting and identifying complex molecular samples. In surface enhanced Raman scattering, a nanorough metallic surface close to the sample enormously enhances the Raman signal. In previous work, the metallic surface was a thin layer of gold deposited on a rough transparent epoxy substrate. The advantage of the clear substrate was that the Raman signal could be obtained by passing light through the substrate, on to opaque samples simply placed against its surface. In this work, a commercially available Raman spectrometer was coupled to a distant probe. Raman signals were obtained from the surface, and from the interior, of a solid specimen located more than 1 m away from the spectrometer. The practical advantage of this arrangement is that it opens up surface enhanced Raman spectrometry to a clinical environment, with a patient simply sitting or lying near the spectrometer.
机译:传统的拉曼散射是用于检测和识别复杂分子样品的众所周知的技术。在表面增强拉曼散射中,靠近样品的纳米粗糙金属表面极大地增强了拉曼信号。在先前的工作中,金属表面是一层金薄层,沉积在粗糙的透明环氧基材上。透明基板的优势在于,拉曼信号可以通过使光线穿过基板,然后直接放在不透明的样品表面上而获得。在这项工作中,将市售的拉曼光谱仪与远距离探针耦合。拉曼信号是从距光谱仪1 m以上的固体样品的表面和内部获得的。这种布置的实际优势在于,它使表面增强的拉曼光谱仪向临床环境开放,患者只需坐在或躺在光谱仪附近即可。

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