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Quantitative Chemical Imaging and Unsupervised Analysis Using Hyperspectral Coherent Anti-Stokes Raman Scattering Microscopy

机译:使用高光谱相干反斯托克斯拉曼散射显微镜进行定量化学成像和无监督分析

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摘要

In this work, we report a method to acquire and analyze hyperspectral coherent anti-Stokes Raman scattering (CARS) microscopy images of organic materials and biological samples resulting in an unbiased quantitative chemical analysis. The method employs singular value decomposition on the square root of the CARS intensity, providing an automatic determination of the components above noise, which are retained. Complex CARS susceptibility spectra, which are linear in the chemical composition, are retrieved from the CARS intensity spectra using the causality of the susceptibility by two methods, and their performance is evaluated by comparison with Raman spectra. We use non-negative matrix factorization applied to the imaginary part and the nonresonant real part of the susceptibility with an additional concentration constraint to obtain absolute susceptibility spectra of independently varying chemical components and their absolute concentration. We demonstrate the ability of the method to provide quantitative chemical analysis on known lipid mixtures. We then show the relevance of the method by imaging lipid-rich stem-cell-derived mouse adipocytes as well as differentiated embryonic stem cells with a low density of lipids. We retrieve and visualize the most significant chemical components with spectra given by water, lipid, and proteins segmenting the image into the cell surrounding, lipid droplets, cytosol, and the nucleus, and we reveal the chemical structure of the cells, with details visualized by the projection of the chemical contrast into a few relevant channels.
机译:在这项工作中,我们报告了一种获取和分析有机材料和生物样品的高光谱相干反斯托克斯拉曼散射(CARS)显微图像的方法,从而实现了无偏定量化学分析。该方法在CARS强度的平方根上采用奇异值分解,从而自动确定保留了噪声以上的分量。通过两种方法使用磁化率的因果关系,从CARS强度谱中检索化学成分线性的复杂CARS磁化率谱,并通过与拉曼光谱进行比较来评估其性能。我们将非负矩阵分解应用于磁化率的虚部和非共振实部,并附加浓度约束,以获得独立变化的化学成分及其绝对浓度的绝对磁化率谱。我们证明了该方法能够对已知脂质混合物进行定量化学分析的能力。然后,我们通过对富含脂质的干细胞衍生的小鼠脂肪细胞以及具有低脂质密度的分化的胚胎干细胞进行成像来显示该方法的相关性。我们通过水,脂质和蛋白质给出的光谱来检索和可视化最重要的化学成分,该光谱将图像分割成细胞周围,脂质滴,细胞质和细胞核,并揭示细胞的化学结构,并通过将化学对比投射到一些相关通道中。

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