首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analytical solutions for diffuse fluorescence spectroscopy/imaging in biological tissues. Part I: zero and extrapolated boundary conditions
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Analytical solutions for diffuse fluorescence spectroscopy/imaging in biological tissues. Part I: zero and extrapolated boundary conditions

机译:生物组织中扩散荧光光谱/成像的分析解决方案。第一部分:零和外推边界条件

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摘要

The mathematical model for diffuse fluorescence spectroscopy/imaging is represented by coupled partial differential equations (PDEs), which describe the excitation and emission light propagation in soft biological tissues. The generic closed-form solutions for these coupled PDEs are derived in this work for the case of regular geometries using the Green's function approach using both zero and extrapolated boundary conditions. The specific solutions along with the typical data types, such as integrated intensity and the mean time of flight, for various regular geometries were also derived for both time- and frequency-domain cases.
机译:扩散荧光光谱/成像的数学模型由耦合偏微分方程(PDE)表示,该方程描述了激发光和发射光在生物软组织中的传播。对于正常几何形状的情况,使用零和外推边界条件的格林函数方法,可以得出这些耦合PDE的通用闭式解。还针对时域和频域情况,导出了针对各种规则几何形状的特定解决方案以及典型数据类型,例如积分强度和平均飞行时间。

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