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Time-resolved Fluorescence Measurements Using Stroboscopic Excitation

机译:使用频闪激发的时间分辨荧光测量

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摘要

We report on the development of a simple technique for obtaining time-domain information using dc detection of fluorescence. We show that this is feasible for assays where a change in lifetime of an indicator occurs in reaction to an analyte, in fluorescence resonance energy transfer for example, and could be particularly useful for assays performed in the scaled-down environment of a "lab-on-a-chip". A rate equation model is presented which allows an objective analysis of the relative importance of the key measurement parameters: optical saturation of the fluorophore and excitation pulse characteristics. We present a comparison of the model with a cuvette based analysis of a carbocyanine dye where the excitation source is a 650 nm wavelength, self-pulsing AlGaInP laser diode.
机译:我们报告使用直流荧光检测获得时域信息的简单技术的发展。我们表明,这对于在与分析物发生反应时指示剂的寿命发生变化(例如在荧光共振能量转移中)的测定是可行的,并且对于在“实验室规模”的按比例缩小环境中进行的测定尤其有用片上”。提出了一个速率方程模型,可以客观分析关键测量参数的相对重要性:荧光团的光学饱和度和激发脉冲特性。我们用基于比色杯的碳菁染料的比色杯分析对模型进行比较,其中激发源是波长为650 nm的自脉冲AlGaInP激光二极管。

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