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首页> 外文期刊>Optical review >Comparison of pulsed-excitation and phase-modulation methods for estimating fluorescence lifetime values using a convolved-autoregressive model and a high-gain photomultiplier tube
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Comparison of pulsed-excitation and phase-modulation methods for estimating fluorescence lifetime values using a convolved-autoregressive model and a high-gain photomultiplier tube

机译:使用卷积自回归模型和高增益光电倍增管估算脉冲寿命的脉冲激励和相位调制方法的比较

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摘要

A comparative study between pulsed excitation (PE) and phase modulation (PM) methods has been carried out numerically and experimentally to estimate fluorescence lifetime values in the combined use of the following two measurement techniques: (i) To enhance the sensitivity in light detection, we have connected a load resistor with a large value at the output of a photomultiplier tube (PMT), which also brings about improvement in the signal-to-noise ratio (SNR) in measurements. (ii) The application of a convolved-autoregressive (C-AR) model to time-series data obtained from such a high-gain PMT enabled us to precisely estimate the fluorescence lifetime values in a nanosecond region. Although dependent on various measurement parameters, we have found that the PM method has potential in the field of biology or biochemistry for screening fluorescent samples.
机译:通过数值和实验对脉冲激发(PE)和相位调制(PM)方法进行了比较研究,以结合以下两种测量技术来估算荧光寿命值:(i)为了增强光检测的灵敏度,我们在光电倍增管(PMT)的输出端连接了一个较大值的负载电阻,这也改善了测量的信噪比(SNR)。 (ii)将卷积自回归(C-AR)模型应用于从这种高增益PMT获得的时间序列数据,使我们能够精确估计纳秒级区域内的荧光寿命值。尽管取决于各种测量参数,但我们发现PM方法在生物学或生物化学领域具有筛选荧光样品的潜力。

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