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通过差分程长光谱法测量混浊介质的局部光学特性。

Measurement of the local optical properties of turbid media by differential path-length spectroscopy.

作者信息

Amelink Arjen, Sterenborg Henricus J

机构信息

Department of Radiation Oncology, Erasmus Medical Center, P.O. Box 5201, 3008 AE Rotterdam, The Netherlands.

出版信息

Appl Opt. 2004 May 20;43(15):3048-54. doi: 10.1364/ao.43.003048.

Abstract

We report on the development of an optical-fiber-based diagnostic tool with which to determine the local optical properties of a turbid medium. By using a single fiber in contact with the medium to deliver and detect white light, we have optimized the probability of detection of photons scattered from small depths. The contribution of scattered light from greater depths to the signal is measured and subtracted with an additional fiber, i.e., a collection fiber, to yield a differential backscatter signal. Phantoms demonstrate that, when photons have large mean free paths compared with the fiber diameter, single scattering dominates the differential backscatter signal. When photons have small mean free paths compared with the fiber diameter, the apparent path length of the photons that contribute to the differential backscatter signal becomes approximately equal to 4/5 of the fiber diameter. This effect is nearly independent of the optical properties of the sample under investigation.

摘要

我们报告了一种基于光纤的诊断工具的开发情况,该工具用于确定浑浊介质的局部光学特性。通过使用一根与介质接触的光纤来传输和检测白光,我们优化了从小深度散射的光子的检测概率。用另一根光纤(即收集光纤)测量并减去来自更大深度的散射光对信号的贡献,以产生差分背散射信号。模型表明,当光子的平均自由程与光纤直径相比很大时,单次散射在差分背散射信号中占主导地位。当光子的平均自由程与光纤直径相比很小时,对差分背散射信号有贡献的光子的表观路径长度约等于光纤直径的4/5。这种效应几乎与所研究样品的光学特性无关。

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