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A comparison of Raman, FTIR and ATR-FTIR micro spectroscopy for imaging human skin tissue sections

机译:拉曼光谱,FTIR和ATR-FTIR显微光谱技术对人体皮肤组织切片成像的比较

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Raman and infrared absorption spectroscopies are compared for the analysis of human hand skin tissue sections. The tissue sections have been formalin fixed and paraffin processed, and subsequently dewaxed. Fourier Transform Infrared (FTIR) spectra are preprocessed using the resonant Mie-extended multiplicative scattering algorithm to remove spectral artefacts. FTIR images of resolution 4 cma?’1, analysed using K-means cluster analysis, reveal the double layer structure of the dermis and epidermis, but no further layer differentiation is achieved using the higher spatial resolution of the Attenuated Total Reflection imaging or improved spectral resolution of 2 cma?’1. At comparable spectral and spatial resolutions and measurement on the same samples, Raman scattering produces spectra of significantly higher spectral detail and can differentiate the stratum corneum from the underlying epithelial layer, and, in the absence of melanin in an artificial skin model, can further differentiate the basal layer from the overlying epithelium. The differences in the performance of the techniques are therefore not instrumentational and are discussed in terms of the technological and fundamental differences between the two complementary techniques.
机译:比较了拉曼光谱和红外吸收光谱,以分析人的手皮肤组织切片。组织切片经福尔马林固定和石蜡处理,然后脱蜡。傅立叶变换红外(FTIR)光谱使用共振Mie扩展倍增散射算法进行预处理,以去除光谱伪影。使用K-均值聚类分析分析的分辨率为4 cma?'1的FTIR图像显示了真皮和表皮的双层结构,但是使用衰减全反射成像的更高空间分辨率或改进的光谱无法实现进一步的层区分。分辨率为2 cma?'1。在可比较的光谱和空间分辨率下以及在相同样品上进行测量时,拉曼散射产生的光谱细节明显更高,并且可以将角质层与下面的上皮层区分开,并且在人造皮肤模型中不存在黑色素的情况下,可以进一步区分上皮的基底层。因此,这些技术的性能差异不是仪器性的,而是根据两种互补技术之间的技术差异和基本差异进行讨论的。

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