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1064 nm Deep Near-Infrared (NIR) Excited Raman Microspectroscopy for Studying Photolabile Organisms

机译:1064 nm深近红外(NIR)激发拉曼光谱用于研究光不稳定生物

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摘要

We have constructed a 1064 nm deep near-infrared (NIR) excited multichannel Raman microspectrometer using an InP/InGaAsP multichannel detector. This microspectrometer achieves high sensitivity suitable for in vivo measurements of single living cells with lateral resolution of 0.7 (mu)m and depth resolution of 3.1 (mu)m. It has been applied to the structural analysis of living cyanobacterial cells, well-known model organisms for photosynthesis research, which are too photolabile to be measured with visible laser excitation. High signal-to-noise ratio (S/N) Raman spectra have been obtained from carotenoid, chlorophyll a, and phycocyanin in a single living cyanobacterial cell with no appreciable interference from autofluorescence or photodamage. Sub-micrometer mapping of Raman intensities provides clear distribution images of the three pigments inside the cell.
机译:我们使用InP / InGaAsP多通道检测器构建了1064 nm深的近红外(NIR)激发多通道拉曼光谱仪。该显微光谱仪实现了高灵敏度,适用于单个活细胞的体内测量,其横向分辨率为0.7μm,深度分辨率为3.1μm。它已被用于活体蓝细菌细胞的结构分析,这是光合作用研究的著名模型生物,它们的光不稳定性太强,无法通过可见激光激发进行测量。在单个活蓝藻细胞中,从类胡萝卜素,叶绿素a和藻蓝蛋白获得了高信噪比(S / N)拉曼光谱,而没有自发荧光或光损伤的明显干扰。拉曼强度的亚微米级映射提供了细胞内三种颜料的清晰分布图像。

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