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用于识别生物组织体内光学系数的相干背向散射的蒙特卡罗模拟。

Monte Carlo simulations of coherent backscatter for identification of the optical coefficients of biological tissues in vivo.

作者信息

Eddowes M H, Mills T N, Delpy D T

出版信息

Appl Opt. 1995 May 1;34(13):2261-7. doi: 10.1364/AO.34.002261.

Abstract

A Monte Carlo model of light backscattered from turbid media has been used to simulate the effects of weak localization in biological tissues. A validation technique is used that implies that for the scatteringand absorption coefficients and for refractive index mismatches found in tissues, the Monte Carlo method is likely to provide more accurate results than the methods previously used. The model also has theability to simulate the effects of various illumination profiles and other laboratory-imposed conditions. A curve-fitting routine has been developed that might be used to extract the optical coefficients from theangular intensity profiles seen in experiments on turbid biological tissues, data that could be obtained in vivo.

摘要

一个用于模拟从混浊介质反向散射光的蒙特卡罗模型已被用于模拟生物组织中弱局域化的效应。所采用的验证技术表明,对于组织中发现的散射系数、吸收系数以及折射率失配情况,蒙特卡罗方法可能比以前使用的方法能提供更准确的结果。该模型还能够模拟各种照明分布和其他实验室设定条件的效应。已开发出一种曲线拟合程序,可用于从混浊生物组织实验中观察到的角强度分布提取光学系数,这些数据可在体内获得。

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