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Effects of incomplete decay in fluorescence lifetime estimation

机译:不完全衰减对荧光寿命估算的影响

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摘要

Fluorescence lifetime imaging has emerged as an important microscopy technique, where high repetition rate lasers are the primary light sources. As fluorescence lifetime becomes comparable to intervals between consecutive excitation pulses, incomplete fluorescence decay from previous pulses can superimpose onto the subsequent decay measurements. Using a mathematical model, the incomplete decay effect has been shown to lead to overestimation of the amplitude average lifetime except in mono-exponential decays. An inverse model is then developed to correct the error from this effect and the theoretical simulations are tested by experimental results.
机译:荧光寿命成像已成为一种重要的显微镜技术,其中高重复频率激光是主要的光源。随着荧光寿命变得可与连续激发脉冲之间的间隔相媲美,来自先前脉冲的不完全荧光衰减会叠加到后续的衰减测量中。使用数学模型,除单指数衰减外,不完全衰减效应已显示出导致振幅平均寿命的高估。然后建立一个逆模型来纠正这种影响的误差,并通过实验结果对理论模拟进行测试。

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