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Calculation of Transfer Functions of Multilayer Biotissues in the Problems of Correction of Their Fluorescence Spectra

机译:荧光光谱校正问题中多层生物发作的转移函数计算

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摘要

A method for rapid calculation of a flux of stimulated fluorescence of a multilayer optically dense medium with inhomogeneous distribution of the fluorophore has been developed. The light field in the medium at the excitation wavelength of fluorescence is represented by a superposition of incident collimated, incident diffuse, and reflected diffuse fluxes. A two-stream approximation is used to describe the light field in the medium at the wavelength of emission of the fluorescence. Fluxes in adjacent elementary layers of the medium and on its surface are connected by simple matrix operators that are obtained using a combination of engineering approaches of radiation-transfer theory and single-scattering approximation. The calculations of fluorescence fluxes of a four-layer biotissue that are excited and recorded at 400-800 nm are compared with their Monte Carlo simulation with a discrepancy of 1%. The effect of the propagation medium on the fluorescence spectra of 5-ALA-induced protoporphyrin IX that are recorded from human skin was studied, and a technique for their correction that is based on measurements and quantitative analysis of the diffuse reflectance spectrum of skin was proposed.
机译:已经开发出一种快速计算具有荧光团的不均匀分布的多层光学致密介质的刺激荧光通量的方法。荧光激发波长的介质中的光场由入射准直,入射漫射和反射漫射通量的叠加来表示。两流近似用于描述荧光发射波长的介质中的光场。介质和其表面的相邻基本层中的助熔剂通过简单的基质操作器连接,所述简单的矩阵算子使用辐射转移理论的工程方法和单散射近似的组合获得。将兴奋和记录在400-800nm处的四层生物发布的荧光通量的计算与它们的蒙特卡罗模拟相比,差异为1%。研究了繁殖介质对从人体皮肤记录的5-Ala诱导的原子卟啉IX的荧光光谱的影响,提出了一种基于皮肤散射反射光谱的测量和定量分析的校正技术。

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