首页> 外文期刊>Analytical chemistry >MAXIMUM ENTROPY METHOD FOR FREQUENCY DOMAIN FLUORESCENCE LIFETIME ANALYSIS .2. TIMING, MISMATCHED INTENSITY, AND REFERENCE LIFETIME
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MAXIMUM ENTROPY METHOD FOR FREQUENCY DOMAIN FLUORESCENCE LIFETIME ANALYSIS .2. TIMING, MISMATCHED INTENSITY, AND REFERENCE LIFETIME

机译:频率域荧光寿命分析的最大熵方法.2。定时,错误的强度和参考寿命

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摘要

The maximum entropy method (MEM) provides a robust and unbiased solution to-fluorescence lifetime data through the use of a broad window of decay terms fit by simultaneous minimization of the chi(2) goodness-of-fit parameter and maximization of a statistical entropy function. This work investigated the effects of three systematic errors, common in frequency-domain measurements, on fluorescence lifetime recovery by MEM. Through real and simulated data, the expression of the systematic errors in lifetime distributions recovered by MEM was compared to that in standard nonlinear least-squares (NLLS) analysis. Reference lifetime errors in the presence of random noise had similar effects on both MEM and NLLS results. Characteristic changes in the recovered lifetimes, fractional intensities, and peak shapes were related to the identification of the true reference lifetime. Compared to NLLS, MEM afforded significant improvements for the recovery of lifetimes and fractional intensities from data containing timing or mismatched intensity errors. These improvements are linked to the dynamic, self-modeling approach of MEM and the direction provided by the entropy criterion. These results speak-to the utility of the maximum entropy approach in frequency-domain fluorescence lifetime recovery as well as in other applications.
机译:最大熵方法(MEM)通过同时使用chi(2)拟合优度参数的最小化和统计熵的最大化来使用宽泛的衰减项拟合,从而为荧光寿命数据提供了鲁棒且无偏的解决方案功能。这项工作研究了在频域测量中常见的三个系统误差对MEM荧光寿命恢复的影响。通过真实和模拟数据,将MEM回收的寿命分布中系统误差的表达与标准非线性最小二乘(NLLS)分析中的表达进行了比较。在存在随机噪声的情况下,参考寿命误差对MEM和NLLS结果都有相似的影响。恢复寿命,分数强度和峰形的特征变化与真实参考寿命的鉴定有关。与NLLS相比,MEM从包含定时或不匹配强度误差的数据中恢复了寿命和强度强度方面有了显着改善。这些改进与MEM的动态自建模方法以及熵标准提供的方向有关。这些结果说明了最大熵方法在频域荧光寿命恢复以及其他应用中的效用。

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