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利用空间偏移拉曼光谱在漫散射介质中进行表面下探测。

Subsurface probing in diffusely scattering media using spatially offset Raman spectroscopy.

作者信息

Matousek P, Clark I P, Draper E R C, Morris M D, Goodship A E, Everall N, Towrie M, Finney W F, Parker A W

机构信息

Central Laser Facility, CCLRC Rutherford Appleton Laboratory, Didcot, Oxfordshire, OX11 0QX, United Kingdom.

出版信息

Appl Spectrosc. 2005 Apr;59(4):393-400. doi: 10.1366/0003702053641450.

Abstract

We describe a simple methodology for the effective retrieval of Raman spectra of subsurface layers in diffusely scattering media. The technique is based on the collection of Raman scattered light from surface regions that are laterally offset away from the excitation laser spot on the sample. The Raman spectra obtained in this way exhibit a variation in relative spectral intensities of the surface and subsurface layers of the sample being investigated. The data set is processed using a multivariate data analysis to yield pure Raman spectra of the individual sample layers, providing a method for the effective elimination of surface Raman scatter. The methodology is applicable to the retrieval of pure Raman spectra from depths well in excess of those accessible with conventional confocal microscopy. In this first feasibility study we have differentiated between surface and subsurface Raman signals within a diffusely scattering sample composed of two layers: trans-stilbene powder beneath a 1 mm thick over-layer of PMMA (poly(methyl methacrylate)) powder. The improvement in contrast of the subsurface trans-stilbene layer without numerical processing was 19 times. The potential applications include biomedical subsurface probing of specific tissues through different overlying tissues such as assessment of bone quality through skin, providing an effective noninvasive means of screening for bone degeneration, other skeletal disease diagnosis, and dermatology studies, as well as materials and catalyst research.

摘要

我们描述了一种用于有效获取漫散射介质中表层下各层拉曼光谱的简单方法。该技术基于从样品上横向偏离激发激光光斑的表面区域收集拉曼散射光。以这种方式获得的拉曼光谱显示出所研究样品的表层和表层下各层相对光谱强度的变化。使用多变量数据分析对数据集进行处理,以生成各个样品层的纯拉曼光谱,从而提供一种有效消除表面拉曼散射的方法。该方法适用于从远超传统共聚焦显微镜可达深度的深度获取纯拉曼光谱。在这项首次可行性研究中,我们区分了由两层组成的漫散射样品中的表面和表层下拉曼信号:在1毫米厚的聚甲基丙烯酸甲酯(PMMA)粉末覆盖层下方的反式二苯乙烯粉末。未经数值处理时,表层下反式二苯乙烯层的对比度提高了19倍。潜在应用包括通过不同的覆盖组织对特定组织进行生物医学表层下探测,例如通过皮肤评估骨质,提供一种有效的非侵入性手段来筛查骨质退化、其他骨骼疾病诊断以及皮肤病学研究,以及材料和催化剂研究。

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