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对扩散介质中反射率和光程对散射变化的敏感性进行统一分析。

Unified analysis of the sensitivities of reflectance and path length to scattering variations in a diffusive medium.

作者信息

Liu H

出版信息

Appl Opt. 2001 Apr 1;40(10):1742-6. doi: 10.1364/ao.40.001742.

Abstract

A unified analysis is presented for the sensitivities of reflectance and path length to scattering variations in a diffusive medium, using an improved solution of the steady-state diffusion equation. This approach enables one to (1) explain theoretically two kinds of dependency of near-infrared reflectance on source-detector separations and (2) obtain an analytical expression for optical path lengths. The results shown here are consistent with those of Kumar and Schmitt [Appl. Opt. 36, 2286 (1997)] and Mourant et al. [Appl. Opt. 36, 5655 (1997)]. Also, discussions are given on (1) possible reasons for some inconsistency between the conclusion drawn by Mourant et al. and results given here and (2) the usefulness of making reflectance measurements while minimizing the sensitivity of reflectance and path length to scattering variations.

摘要

利用稳态扩散方程的改进解,对扩散介质中反射率和光程长度对散射变化的敏感性进行了统一分析。这种方法能够:(1)从理论上解释近红外反射率对源 - 探测器间距的两种依赖性;(2)获得光程长度的解析表达式。此处所示结果与Kumar和Schmitt [《应用光学》36, 2286 (1997)] 以及Mourant等人 [《应用光学》36, 5655 (1997)] 的结果一致。此外,还讨论了:(1)Mourant等人得出的结论与此处结果之间存在一些不一致的可能原因;(2)在使反射率和光程长度对散射变化的敏感性最小化的同时进行反射率测量的实用性。

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