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A Maximum Likelihood method for lifetime estimation in photon counting-based Fluorescence Lifetime Imaging Microscopy

机译:基于光子计数的荧光寿命成像显微镜中寿命估计的最大似然法

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In this paper we derive a Maximum Likelihood (ML) framework for photon counting-based fluorescence lifetime estimation in Fluorescence Lifetime Imaging Microscopy (FLIM) from the biophysical phenomenon and instrument models. Data collected at a given pixel consist of photon counts exponentially decreasing along time and are assumed to follow Poisson statistics. Both pointwise approaches and a neighborhood-wise approach are proposed to take explicitly into account the spatial correlation of data. Evaluations and comparisons are presented on simulated as well as on experimental biological image data.
机译:在本文中,我们从生物物理现象和仪器模型中得出了最大寿命(ML)框架,用于在荧光寿命成像显微镜(FLIM)中基于光子计数的荧光寿命估计。在给定像素处收集的数据由随时间呈指数下降的光子计数组成,并假定遵循泊松统计。提出了逐点方法和邻域方法,以明确考虑数据的空间相关性。在模拟以及实验生物图像数据上都进行了评估和比较。

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