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Modulated Raman spectroscopy technique for 'real-time' fluorescence rejection

机译:调制拉曼光谱技术可实现“实时”荧光抑制

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Raman spectroscopy is a label-free and non-invasive method that measures the inelastic scattered light from a sample giving insight into the vibration eigenmodes of the excited molecules. Raman spectroscopy provides a detailed chemical composition of the sample, constituting a sort of its chemical fingerprint. Although Raman spectroscopy is a useful technique to identify and quantify species in a given matrix, it has been severely limited in its applicability by fluorescence. Spectrally, this fluorescence occurs at the same wavelength as the Raman signal and is often several orders of magnitude more intense that the weak chemical transitions probed by Raman spectroscopy. Often, this fluorescence background and its natural variability make biochemical analysis using Raman spectroscopy impractical. In this work, we present the theory and the implementation of an innovative modulated Raman spectroscopy technique to filter out the Raman spectra from the fluorescence background by modulating of the excitation wavelength. The method is based on the continuous wavelength shift of the Raman peaks with the modulation of the laser wavelength while the fluorescence background remains static. Exploiting this physical property allows us to clearly distinguish between the Raman signal and the fluorescence background. Our method is related to wavelength shifting Raman spectroscopy but incorporates two key novel elements: (i) the use of more than two excitation wavelengths and (ii) multi-channel lock-in detection of the Raman signal for suppression of the fluorescence background. Our results establish a direct and practical approach for fluorescence background suppression in 'real-time' Raman spectroscopy for in-vivo biomedical applications.
机译:拉曼光谱法是一种无标记的非侵入性方法,可测量样品中的非弹性散射光,从而深入了解被激发分子的振动本征模。拉曼光谱法提供了样品的详细化学成分,构成了其化学指纹的一种。尽管拉曼光谱法是鉴定和定量给定基质中物种的有用技术,但其适用性受到荧光的严格限制。在光谱上,这种荧光与拉曼信号的波长相同,并且通常比拉曼光谱法探测到的弱化学跃迁强度高几个数量级。通常,这种荧光背景及其自然变异性使得使用拉曼光谱进行生化分析变得不切实际。在这项工作中,我们介绍了一种创新的调制拉曼光谱技术的理论和实现,以通过调制激发波长从荧光背景中滤除拉曼光谱。该方法基于拉曼峰的连续波长偏移和激光波长的调制,而荧光背景保持静态。利用这种物理特性,我们可以清楚地区分拉曼信号和荧光背景。我们的方法与波长位移拉曼光谱法有关,但结合了两个关键的新颖元素:(i)使用两个以上的激发波长和(ii)拉曼信号的多通道锁定检测,以抑制荧光背景。我们的结果为体内生物医学应用“实时”拉曼光谱中的荧光背景抑制建立了直接实用的方法。

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