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Fingerprint-to-CH stretch continuously tunable high spectral resolution stimulated Raman scattering microscope

机译:指纹到CH拉伸连续调谐高光谱分辨率刺激拉曼散射显微镜

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摘要

Stimulated Raman scattering (SRS) microscopy is a label-free method generating images based on chemical contrast within samples, and has already shown its great potential for high-sensitivity and fast imaging of biological specimens. The capability of SRS to collect molecular vibrational signatures in bio-samples, coupled with the availability of powerful statistical analysis methods, allows quantitative chemical imaging of live cells with sub-cellular resolution. This application has substantially driven the development of new SRS microscopy platforms. Indeed, in recent years, there has been a constant effort on devising configurations able to rapidly collect Raman spectra from samples over a wide vibrational spectral range, as needed for quantitative analysis by using chemometric methods. In this paper, an SRS microscope which exploits spectral shaping by a narrowband and rapidly tunable acousto-optical tunable filter (AOTF) is presented. This microscope enables spectral scanning from the Raman fingerprint region to the Carbon-Hydrogen (CH)-stretch region without any modification of the optical setup. Moreover, it features also a high enough spectral resolution to allow resolving Raman peaks in the crowded fingerprint region. Finally, application of the developed SRS microscope to broadband hyperspectral imaging of biological samples over a large spectral range from 800 to 3600 cm(-1), is demonstrated.
机译:受刺激的拉曼散射(SRS)显微镜是一种基于样品内的化学对比的图像的无标记方法,并且已经示出了其高灵敏度和生物样本的快速成像的巨大潜力。 SRS在生物样品中收集分子振动签收的能力,加上强大的统计分析方法的可用性,允许具有子细胞分辨率的活细胞的定量化学成像。该应用程序大大驱动了新的SRS显微镜平台的开发。实际上,近年来,根据使用化学计量方法,可以在设计能够从宽振动谱范围内快速收集拉曼光谱的配置的配置不断努力。本文介绍了一种SRS显微镜,其利用窄带和快速可调声光可调滤波器(AOTF)利用窄带和快速调谐的声光可调滤波器(AOTF)。该显微镜能够从拉曼指纹区域的光谱扫描到碳 - 氢气(CH)杆蚀刻区域,而无需任何修改光学设置。此外,它还具有足够高的光谱分辨率,以允许在拥挤的指纹区域中解决拉曼峰。最后,对显影的SRS显微镜在800至3600cm(-1)的大光谱范围内的生物样品的宽带高光谱成像。

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