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Wide Field Spectral Imaging with Shifted Excitation Raman Difference Spectroscopy Using the Nod and Shuffle Technique

机译:宽场光谱成像与换档激励拉曼差异光谱使用点击技术

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摘要

Wide field Raman imaging using the integral field spectroscopy approach was used as a fast, one shot imaging method for the simultaneous collection of all spectra composing a Raman image. For the suppression of autofluorescence and background signals such as room light, shifted excitation Raman difference spectroscopy (SERDS) was applied to remove background artifacts in Raman spectra. To reduce acquisition times in wide field SERDS imaging, we adapted the nod and shuffle technique from astrophysics and implemented it into a wide field SERDS imaging setup. In our adapted version, the nod corresponds to the change in excitation wavelength, whereas the shuffle corresponds to the shifting of charges up and down on a Charge-Coupled Device (CCD) chip synchronous to the change in excitation wavelength. We coupled this improved wide field SERDS imaging setup to diode lasers with 784.4/785.5 and 457.7/458.9 nm excitation and applied it to samples such as paracetamol and aspirin tablets, polystyrene and polymethyl methacrylate beads, as well as pork meat using multiple accumulations with acquisition times in the range of 50 to 200 ms. The results tackle two main challenges of SERDS imaging: gradual photobleaching changes the autofluorescence background, and multiple readouts of CCD detector prolong the acquisition time.
机译:使用积分场光谱方法的宽场拉曼成像用作快速的一个拍摄成像方法,用于同时收集构成拉曼图像的所有光谱。为了抑制自发荧光和背景信号,例如房间光,换档激励拉曼差异光谱(SERDS)被应用于移除拉曼光谱中的背景伪像。为了减少广场上的采集时间,我们改编了来自天体物理学的点头和洗牌技术,并将其实施到广场SERDS成像设置中。在我们改进的版本中,NOD对应于激发波长的变化,而随机播放对应于对电荷耦合器件(CCD)芯片上的电荷的移位与激发波长的变化同步。我们将这种改进的宽场SERDS成像设置为二极管激光器,具有784.4 / 785.5和457.7 / 458.9nm励磁,并将其应用于样品,如扑热息痛和阿司匹林片,聚苯乙烯和聚甲基丙烯酸甲酯珠,以及使用多重采集的饮料时间范围为50至200毫秒。结果解决了SERDS成像的两个主要挑战:逐渐光博改变自发荧光背景,以及CCD检测器的多次读数延长了采集时间。

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