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Comparative FT-Raman and FT-infrared biochemical images of the same tissue sections provide new insight into tissue structure formation and aberrations

机译:相同组织切片的比较FT拉曼光谱和FT红外生化图像可提供对组织结构形成和像差的新见解

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Abstract: IR spectroscopy represents only one section of the entire vibrational spectrum of molecules. Due to the nature of the material analyzed, IR spectra of cell sand tissues always contain features of proteins, lipids, DNA/RNA, carbohydrates and of many small metabolites. The distinction of different tissue structures is achieved by comparing those spectral features, using the fact that cells vary in their chemical composition and therefore also in their spectra. Although cells are composed of different biomolecules, the spectral features expressed in IR spectra normally vary only slightly but are most often more than sufficient for analysis. However, this is where Raman spectroscopy may help enhance the differentiation capabilities of vibration spectroscopy. In contrast to IR spectroscopy, Raman spectroscopy only provides information on some of the many cellular biomolecules, thereby being very specific. Conjugated double bonds, aromatic rings and bonds between heavier atoms can be seen as very sharp features in Raman spectra of biomolecules and cells. In some cases even the distribution of drugs can be cartographed in lining cells. Generating IR and Raman images with similar spatial resolution of the same tissue sections may improve the diagnostic capabilities possible with either spectroscopic method alone. Gland tissue sections are presented and analyzed for the distribution of typical cell components and specific molecules such as thyroglobulines and precursors. In addition, fiber optics measurements on tissue sections in vitro are introduced to illustrate the power of the combination of FT-Raman and FT- NIR fiber optics technology. The use of single band analysis, bivariate statistics and cluster analysis applied to spectra from both spectroscopy methods will be assessed in this study and employed to illustrate the concept. !!26
机译:摘要:红外光谱仅代表分子整个振动光谱的一部分。由于所分析材料的性质,细胞砂组织的红外光谱始终包含蛋白质,脂质,DNA / RNA,碳水化合物和许多小代谢物的特征。通过比较细胞的化学成分和光谱变化,可以比较这些光谱特征,从而实现不同组织结构的区别。尽管细胞由不同的生物分子组成,但IR光谱中表达的光谱特征通常仅稍有变化,但通常足以进行分析。然而,这是拉曼光谱法可以帮助增强振动光谱法的区分能力的地方。与红外光谱相反,拉曼光谱仅提供有关许多细胞生物分子中某些分子的信息,因此具有很高的特异性。在生物分子和细胞的拉曼光谱中,共轭双键,芳环和重原子之间的键可被视为非常尖锐的特征。在某些情况下,甚至药物分布也可以在衬砌细胞中绘制成图。生成具有相同组织切片相似空间分辨率的IR和拉曼图像可能会提高仅使用这两种光谱方法的诊断能力。呈现并分析了腺组织切片,以分析典型细胞成分和特定分子(如甲状腺球蛋白和前体)的分布。另外,介绍了体外组织切片上的光纤测量,以说明FT-拉曼和FT-NIR光纤技术相结合的功能。单谱分析,双变量统计和聚类分析应用于这两种光谱方法的光谱将在本研究中进行评估,并用于说明这一概念。 !! 26

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