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[医学无创分光光度法计算任务中浑浊生物组织和介质光学特性测定程序的一个特定特征]

[A specific feature of the procedure for determination of optical properties of turbid biological tissues and media in calculation tasks of medical noninvasive spectrophotometry].

作者信息

Rogatkin D A

出版信息

Med Tekh. 2007 Mar-Apr(2):10-6.

Abstract

The goal of this work is to discuss the problems of accuracy and reliability of the procedure for determination of optical per-unit-length properties of light-scattering biological tissues and media in medical noninvasive spectrophotometry. The determination procedure is based on the two-flux Kubelka-Munk approach. A simple one-dimensional model problem is formulated. The accurate solution of this problem is compared to its solution based on the Kubelka-Munk approach in various approximations. It is shown that in the general case of light-scattering and absorbing medium use of two independent transport coefficients (for scattering and absorption processes), as suggested in the conventional Kubelka-Munk approach, leads to errors of direct calculation of properties of backscattered and transmitted radiation in biological tissues. More valid and accurate expressions for transport coefficients can be obtained on the basis of a particular solution of the problem for a surface element of the model medium with known photometrical properties. This method makes it possible to determine accurately the radiation flux at the external boundary of the medium using the Kubelka-Munk approach. It is expected that solution of the inverse problem would make it possible to reconstruct accurately the optical properties of biological tissues from the experimental data.

摘要

这项工作的目标是讨论在医学非侵入性分光光度法中,测定光散射生物组织和介质的光学单位长度特性的程序的准确性和可靠性问题。该测定程序基于双通量库贝尔卡-蒙克方法。提出了一个简单的一维模型问题。将该问题的精确解与其在各种近似下基于库贝尔卡-蒙克方法的解进行比较。结果表明,在光散射和吸收介质的一般情况下,按照传统库贝尔卡-蒙克方法的建议,使用两个独立的传输系数(用于散射和吸收过程)会导致直接计算生物组织中后向散射和透射辐射特性时出现误差。基于具有已知光度特性的模型介质表面元素问题的特定解,可以得到更有效和准确的传输系数表达式。该方法使得使用库贝尔卡-蒙克方法准确确定介质外边界处的辐射通量成为可能。预计反问题的解决将使得从实验数据中准确重建生物组织的光学特性成为可能。

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