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Autoregressive-Model-Based Fluorescence-Lifetime Measurements by Phase-Modulation Fluorometry Using a Pulsed-Excitation Light Source and a High-Gain Photomultiplier Tube

机译:通过使用脉冲激发光源和高增益光电倍增管的相位调制荧光法,基于自回归模型的荧光寿命测量

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摘要

We propose a novel method for measuring fluorescence lifetimes by use of a pulsed-excitation light source and an ordinary or a high-gain photomultiplier tube (PMT) with a high-load resistor. In order to obtain the values of fluorescence lifetimes, we adopt a normal data-processing procedure used in phase-modulation fluorometry. We apply an autoregressive (AR)-model-based data-analysis technique to fluorescence- and reference-response time-series data obtained from the PMT in order to derive plural values of phase differences at a repetition frequency of the pulsed-excitation light source and its harmonic ones. The connection of the high-load resistor enhances sensitivity in signal detection in a certain condition. Introduction of the AR-model-based data-analysis technique improves precision in estimating the values of fluorescence lifetimes. Depending on the value of the load resistor and that of the repetition frequency, plural values of fluorescence lifetimes are obtained at one time by utilizing the phase information of harmonic frequencies. Because the proposed measurement system is simple to construct, it might be effective when we need to know approximate values of fluorescence lifetimes readily, such as in the field of biochemistry for a screening purpose.
机译:我们提出了一种通过使用脉冲激励光源和带有高负载电阻的普通或高增益光电倍增管(PMT)来测量荧光寿命的新方法。为了获得荧光寿命的值,我们采用了用于相位调制荧光法的常规数据处理程序。我们将基于自回归(AR)模型的数据分析技术应用于从PMT获得的荧光和参考响应时间序列数据,以便在脉冲激励光源的重复频率下得出多个相差值及其谐波。在特定条件下,高负载电阻器的连接可提高信号检测的灵敏度。基于AR模型的数据分析技术的引入提高了估计荧光寿命值的精度。根据负载电阻的值和重复频率的值,利用谐波频率的相位信息一次获得多个荧光寿命值。由于所提出的测量系统易于构建,因此当我们需要容易地了解荧光寿命的近似值(例如在用于筛选目的的生物化学领域)时,它可能是有效的。

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    《Applied Spectroscopy》 |2009年第11期|1256-1261|共6页
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