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首页> 外文期刊>Journal of innovative optical health sciences >Interpreting the biochemical specificity of mouse spinal cord by confocal raman microspectral imaging
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Interpreting the biochemical specificity of mouse spinal cord by confocal raman microspectral imaging

机译:共聚焦拉曼光谱成像解释小鼠脊髓的生化特异性

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摘要

Interpreting the biochemical specificity of spinal cord tissue is the essential requirement for understanding the biochemical mechanisms during spinal-cord-related pathological course. In this work, a longitudinal study was implemented to reveal a precise linkage between the spectral features and the molecular composition in ex vivo mouse spinal cord tissue by microspectral Raman imaging. It was testified that lipid-rich white matter could be distinguished from gray matter not only by the lipid Raman peaks at 1064, 1300, 1445 and 1660cm?1, but also by protein (1250 and 1328cm?1) and saccharides (913 and 1137cm?1) distributions. K-means cluster analysis was further applied to visualize the morphological basis of spinal cord tissue by chemical components and their distribution patterns. Two-dimensional chemical images were then generated to visualize the contrast between two different tissue types by integrating the intensities of the featured Raman bands. All the obtained results illustrated the biochemica...
机译:解释脊髓组织的生化特异性是了解脊髓相关病理过程中生化机制的基本要求。在这项工作中,进行了一项纵向研究,以通过显微光谱拉曼成像揭示离体小鼠脊髓组织中光谱特征与分子组成之间的精确联系。经证实,富含脂质的白质不仅可以通过在1064、1300、1445和1660cm?1处的脂质拉曼峰,还可以通过蛋白质(1250和1328cm?1)和糖类(913和1137cm)来区别于灰质。 ?1)分布。 K-均值聚类分析被进一步应用于通过化学成分及其分布模式来可视化脊髓组织的形态学基础。然后通过整合特征拉曼谱带的强度,生成二维化学图像,以可视化两种不同组织类型之间的对比度。所有获得的结果说明了该生化反应。

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