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Laser-induced fluorescence microscopic system using an optical parametric oscillator for tunable detection in microchip analysis

机译:使用光学参量振荡器的激光诱导荧光显微系统,用于微芯片分析中的可调检测

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摘要

A laser-induced fluorescence microscopic system based on optical parametric oscillation has been constructed as a tunable detector for microchip analysis. The detection limit of sulforhodamine B (Ex. 520 nm, Em. 570 nm) was 0.2 mu mol, which was approximately eight orders of magnitude better than with a conventional fluorophotometer. The system was applied to the determination of fluorescence-labeled DNA (Ex. 494 nm, Em. 519 nm) in a microchannel and the detection limit reached a single molecule. These results showed the feasibility of this system as a highly sensitive and tunable fluorescence detector for microchip analysis.
机译:基于光学参量振荡的激光诱导荧光显微系统已构建为微芯片分析的可调检测器。磺基罗丹明B的检出限(Ex。520 nm,Em。570 nm)为0.2μmol,比常规的荧光光度计高约8个数量级。该系统应用于微通道中荧光标记DNA(Ex。494 nm,Em。519 nm)的测定,检出限达到单个分子。这些结果表明该系统作为用于微芯片分析的高灵敏度和可调荧光检测器的可行性。

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