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High-Speed Nonlinear Interferometric Vibrational Imaging of Biological Tissue With Comparison to Raman Microscopy

机译:生物组织的高速非线性干涉振动成像与拉曼显微镜的比较

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摘要

Vibrational contrast imaging of the distribution of complex biological molecules requires the use of techniques that provide broadband spectra with sufficient resolution. Coherent anti-Stokes Raman scattering (CARS) microscopy is currently limited in meeting these requirements due to the presence of a nonresonant background and its inability to target multiple resonances simultaneously. We present nonlinear interferometric vibrational imaging (NIVI), a technique based on CARS that uses femtosecond pump and Stokes pulses to retrieve broadband vibrational spectra over 200 $hbox{cm}^{-1}$ (full-width at half maximum). By chirping the pump and performing spectral interferometric detection, the anti-Stokes pulses are resolved in time. This phase-sensitive detection allows suppression of not only the nonresonant background, but also of the real part of the nonlinear susceptibility $chi^{(3)}$, improving the spectral resolution and features to make them comparable to those acquired with spontaneous Raman microscopy, as shown for a material sample and mammary tissue.
机译:复杂生物分子分布的振动对比成像需要使用能够提供具有足够分辨率的宽带光谱的技术。由于存在非共振本底并且无法同时瞄准多个共振,因此相干抗斯托克斯拉曼散射(CARS)显微镜目前在满足这些要求方面受到限制。我们介绍了非线性干涉振动成像(NIVI),这是一种基于CARS的技术,该技术使用飞秒泵和Stokes脉冲来检索200 $ hbox {cm} ^ {-1} $(半高全宽)上的宽带振动谱。通过鸣叫泵并执行光谱干涉检测,可以及时消除反斯托克斯脉冲。这种对相位敏感的检测不仅可以抑制非共振本底,而且还可以抑制非线性磁化率$ chi ^ {(3)} $的实部,从而改善了光谱分辨率和功能,使其与自发拉曼光谱可比显微镜检查,如材料样本和乳腺组织所示。

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