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Coupling Confocal Fluorescence Microscopyand Microfluidic Device for Single Molecule Detection

机译:偶联共聚焦荧光显微镜,微流体装置进行单分子检测

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The ability to accurately measure the mobility of particles at low concentrations in small volumes is very useful for a broad range of applications. The coupling of micro- and nano-fluidic devices and confocal microscopy offers an efficient and rapid technique for multiplexed single molecule detection and analysis. Microfluidic channels at micron and sub-micron scales were designed and fabricated on fused silica wafers. Fluorescence correlation spectroscopy and fluorescence lifetime were applied to measure and analyze the mobility of fluorescent species in micro-droplets, micro-channels, and nano-channels. The experimental results show a strong dependence on geometric configurations. Artifacts in the experiments are investigated and discussed.
机译:在小体积中以低浓度准确测量颗粒迁移率的能力对于广泛的应用非常有用。微型和纳米流体装置和共聚焦显微镜的耦合为多重单分子检测和分析提供了高效且快速的技术。微型和亚微米秤的微流体通道在熔融石英晶片上设计和制造。荧光相关光谱和荧光寿命被应用于测量和分析微液滴,微通道和纳米通道中荧光物种的迁移率。实验结果表明了对几何配置的强烈依赖。研究实验中的伪影并讨论。

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