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有限血液介质的漫反射:在光纤导管建模中的应用

Diffuse reflectance from a finite blood medium: applications to the modeling of fiber optic catheters.

作者信息

Reynolds L, Johnson C, Ishimaru A

出版信息

Appl Opt. 1976 Sep 1;15(9):2059-67. doi: 10.1364/AO.15.002059.

Abstract

The scattering and absorption of light by randomly oriented, discretely scattering, red blood cells imbedded in a homogeneous plasma medium can be described by the P1 approximation to the one-speed transport equation, where the cells have the dual role of anisotropic sources for first scattering events and of scattering and absorption sites for subsequent scattering events. Equations for diffuse reflectance defined for a finite size receiver in the plane of a normally incident cylindrical photon beam are derived and compared with experimental data to fundamentally justify the basic sending-receiving characteristics of a fiber optic catheter model. A model of the fiber optic catheter used for the spectrophotometric measurement of oxygen content in blood is developed from the theory and compared with experimental results to further substantiate the theoretical approach.

摘要

嵌入均匀血浆介质中的随机取向、离散散射的红细胞对光的散射和吸收,可以用单速输运方程的P1近似来描述,其中这些细胞对于首次散射事件具有各向异性源的双重作用,对于后续散射事件具有散射和吸收位点的双重作用。推导了在垂直入射圆柱光子束平面内为有限尺寸接收器定义的漫反射率方程,并与实验数据进行比较,从根本上证明了光纤导管模型的基本收发特性。基于该理论建立了用于分光光度法测量血液中氧含量的光纤导管模型,并与实验结果进行比较,以进一步证实该理论方法。

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