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Two-channel microfluidic CARS: experimental quantification of pure vibrational contrast in CARS images

机译:两通道微流控CARS:CARS图像中纯振动对比的实验量化

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The combination of linear and nonlinear Raman microspectroscopy has been established to be a powerful tool for biomedical diagnostics. In this contribution we discuss our recent approaches towards CARS (coherent anti-Stokes Raman scattering) based quantification of analytes, which is generally complicated by the CARS-signal strength dependence on the square of the molecular concentration and on the interplay between a molecular-specific vibrational signal and a nonresonant contribution in the signal generation. Due to these complications the quantification of analytes presents a major challenge in CARS microscopy. Here we discuss two recently developed approaches, i.e. on the one hand a simplified setup for coherent anti-Stokes Raman scattering (CARS) microscopy, which allows for recording CARS images with 30 cm-1 excitation bandwidth for probing Raman bands between 500 and 900 cm-1 with minimal requirements for alignment. This experimental arrangement is based on electronic switching between CARS images recorded at different Raman resonances by combining a photonic crystal fiber (PCF) as broad-band light source and an acoustooptical programmable dispersive filter (AOPDF) as tunable wavelength filter. On the other hand, we discuss how the introduction of carbon-deuterium (C-D) bonds into drug compounds constitutes a non-invasive labeling approach that allows for higher intrinsic CARS contrast to be obtained. The quantitative detection of C-deuterated drugs by Raman microspectroscopy and CARS microscopy is examined. Concentration-dependent studies on drugs with aliphatic and aromatic C-D moieties were performed in a two-channel microfluidic chip, using the corresponding non-deuterated (C-H) isotopomers as an internal reference
机译:线性和非线性拉曼光谱学的结合已被确立为生物医学诊断的有力工具。在此贡献中,我们讨论了基于分析物的基于CARS(相干反斯托克斯拉曼散射)定量的最新方法,这通常由于CARS信号强度依赖于分子浓度的平方以及分子特异性之间的相互作用而变得复杂振动信号和信号产生中的非共振影响。由于这些并发症,分析物的定量在CARS显微镜检查中提出了重大挑战。在这里,我们讨论两种最近开发的方法,即,一方面是用于相干抗斯托克斯拉曼散射(CARS)显微镜的简化设置,它允许记录30 cm-1激发带宽的CARS图像,以探测500至900 cm之间的拉曼光谱带-1,具有最低限度的对齐要求。此实验安排基于通过将作为宽带光源的光子晶体光纤(PCF)与作为可调波长滤波器的声光可编程色散滤波器(AOPDF)相结合,在以不同拉曼共振记录的CARS图像之间进行电子切换的方式。另一方面,我们讨论了将碳-氘(C-D)键引入药物化合物如何构成一种非侵入性标记方法,该方法可实现更高的内在CARS对比度。检查了通过拉曼光谱和CARS显微镜对C氘代药物的定量检测。使用相应的非氘化(C-H)同位素异构体作为内部参照,在双通道微流控芯片中对具有脂肪族和芳香族C-D部分的药物进行浓度依赖性研究

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