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Combining optical trapping in a microfluidic channel with simultaneous micro-Raman spectroscopy and motion detection

机译:将微流道中的光捕获与同时拉曼光谱和运动检测相结合

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Since their invention by Ashkin optical tweezers have demonstrated their ability and versatility as a non-invasive tool for micromanipulation. One of the most useful additions to the basic optical tweezers system is micro-Raman spectroscopy, which permits highly sensitive analysis of single cells or particles. We report on the development of a dual laser system combining two spatial light modulators to holographically manipulate multiple traps (at 1064nm) whilst undertaking Raman spectroscopy using a 532nm laser. We can thus simultaneously trap multiple particles and record their Raman spectra, without perturbing the trapping system. The dual beam system is built around micro-fluidic channels where crystallisation of calcium carbonate occurs on porymethylmethacrylate (PMMA) beads. The setup is designed to simulate at a microscopic level the reactions that occur on items in a dishwasher, where permanent filming of calcium carbonate on drinking glasses is a problem. Our system allows us to monitor crystal growth on trapped particles in which the Raman spectrum and changes in movement of the bead are recorded. Due to the expected low level of crystallisation on the bead surfaces this allows us to obtain results quickly and with high sensitivity. The long term goal is to study the development of filming on samples in-situ with the microfluidic system acting as a model dishwasher.
机译:自从Ashkin光学镊子发明它们以来,已经证明了其作为微操纵非侵入性工具的能力和多功能性。基本光学镊子系统最有用的附加功能之一是显微拉曼光谱,可对单个细胞或颗粒进行高度灵敏的分析。我们报告了结合两个空间光调制器以全息方式操纵多个陷阱(在1064nm)同时使用532nm激光进行拉曼光谱分析的双激光系统的发展情况。因此,我们可以同时捕获多个粒子并记录其拉曼光谱,而不会干扰捕获系统。双束系统建立在微流体通道周围,碳酸钙的结晶发生在甲基丙烯酸丙烯酸甲酯(PMMA)珠粒上。该装置设计用于在微观水平上模拟洗碗机中物品上发生的反应,在这些情况下,碳酸钙在水杯上的永久性成膜是一个问题。我们的系统使我们能够监控捕获的粒子上的晶体生长,其中记录了拉曼光谱和珠子运动的变化。由于珠子表面上预期的低结晶度,这使我们能够快速且高灵敏度地获得结果。长期目标是研究使用微流体系统作为模型洗碗机在原位样品上成膜的发展。

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