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利用多板连续谱实现整个拉曼活性区域的受激拉曼散射光谱显微镜

Towards stimulated Raman scattering spectro-microscopy across the entire Raman active region using a multiple-plate continuum.

出版信息

Opt Express. 2022 Oct 10;30(21):38975-38984. doi: 10.1364/OE.469050.

Abstract

Stimulated Raman scattering (SRS) has attracted increasing attention in bio-imaging because of the ability toward background-free molecular-specific acquisitions without fluorescence labeling. Nevertheless, the corresponding sensitivity and specificity remain far behind those of fluorescence techniques. Here, we demonstrate SRS spectro-microscopy driven by a multiple-plate continuum (MPC), whose octave-spanning bandwidth (600-1300 nm) and high spectral energy density (∼1 nJ/cm) enable spectroscopic interrogation across the entire Raman active region (0-4000 cm), SRS imaging of a Drosophila brain, and electronic pre-resonance (EPR) detection of a fluorescent dye. We envision that utilizing MPC light source will substantially enhance the sensitivity and specificity of SRS by implementing EPR mode and spectral multiplexing via accessing three or more coherent wavelengths.

摘要

受激拉曼散射(SRS)因其能够在无需荧光标记的情况下进行背景无干扰的分子特异性获取,在生物成像领域引起了越来越多的关注。然而,其相应的灵敏度和特异性仍远远落后于荧光技术。在这里,我们展示了由多板连续体(MPC)驱动的 SRS 光谱显微镜,其倍频带宽(600-1300nm)和高光谱能量密度(~1nJ/cm)能够在整个拉曼活性区域(0-4000cm)进行光谱检测,对果蝇大脑进行 SRS 成像,并对荧光染料进行电子预共振(EPR)检测。我们设想,通过利用 MPC 光源实现 EPR 模式和光谱复用,从而访问三个或更多相干波长,将极大地提高 SRS 的灵敏度和特异性。

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