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Forward-adjoint fluorescence model: Monte Carlo integration and experimental validation

机译:前向伴随荧光模型:蒙特卡洛积分和实验验证

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摘要

The adjoint form of the photon transport equation is applied to a generalized fluorescence detection problem, and its accuracy is empirically tested. This approach can be interpreted as mathematically reversing the temporal flow of fluorescent photons; that is, they are tracked from the detector back to potential sites of origin in the scattering medium. The result is a distribution of potential fluorescing sites that, when properly normalized, gives a probability field of the relative importance of the photon starting position and direction to the resulting signal. This adjoint solution can be combined with the temporally forward-derived distribution of absorbed excitation photons to evaluate the fluorescence excitation detection scheme. This bypasses the normal, temporal derivation wherein the fluorescence transport solution is dependent on the result of the excitation transport solution. (C) 1997 Optical Society of America.
机译:将光子传输方程的伴随形式应用于广义荧光检测问题,并通过经验检验其准确性。这种方法可以解释为数学上逆转了荧光光子的时间流。也就是说,它们从检测器被追踪回到散射介质中潜在的起源位置。结果是潜在发荧光位点的分布,当适当地进行归一化时,将给出光子起始位置和方向相对于所得信号的相对重要性的概率场。该伴随溶液可以与吸收的激发光子的时间前向分布相结合,以评估荧光激发检测方案。这绕开了正常的时间导数,其中荧光传输溶液取决于激发传输溶液的结果。 (C)1997年美国眼镜学会。

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