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Highly specific label-free molecular imaging with spectrally tailored excitation-stimulated Raman scattering (STE-SRS) microscopy

机译:高光谱无标记分子成像,光谱定制的激发拉曼散射(STE-SRS)显微镜

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摘要

Label-free microscopy that has chemical contrast and high acquisition speeds up to video rates has recently been made possible using stimulated Raman scattering (SRS) microscopy. SRS imaging offers high sensitivity, but the spectral specificity of the original narrowband implementation is limited, making it difficult to distinguish chemical species with overlapping Raman bands. Here, we present a highly specific imaging method that allows mapping of a particular chemical species in the presence of interfering species, based on tailored multiplex excitation of its vibrational spectrum. This is implemented by spectral modulation of a broadband pump beam at a high frequency (>1 MHz), allowing detection of the SRS signal of the narrowband Stokes beam with high sensitivity. Using the scheme, we demonstrate quantification of cholesterol in the presence of lipids, and real-time three-dimensional spectral imaging of protein, stearic acid and oleic acid in live Caenorhabditis elegans.
机译:最近,使用受激拉曼散射(SRS)显微镜使具有化学对比度和高采集速度直至视频速率的无标记显微镜成为可能。 SRS成像具有很高的灵敏度,但是原始窄带方法的光谱特异性受到限制,因此难以区分具有重叠拉曼谱带的化学物质。在这里,我们提出了一种高度特定的成像方法,该方法可以基于特定的化学物种在其振动谱的多重激发下在存在干扰物种的情况下进行映射。这是通过对宽带泵浦光束进行高频(> 1 MHz)的频谱调制来实现的,从而可以以高灵敏度检测窄带Stokes光束的SRS信号。使用该方案,我们证明了脂质存在下胆固醇的定量,以及实时秀丽隐杆线虫中蛋白质,硬脂酸和油酸的实时三维光谱成像。

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