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首页> 外文期刊>Applied optics >Influence of layered tissue architecture on estimates of tissue optical properties obtained from spatially resolved diffuse reflectometry
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Influence of layered tissue architecture on estimates of tissue optical properties obtained from spatially resolved diffuse reflectometry

机译:分层组织结构对通过空间分辨漫反射法获得的组织光学特性的估计的影响

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摘要

Most instruments used to measure tissue optical properties noninvasively employ data-analysis algorithms that rely on the simplifying assumption that the tissue is semi-infinite and homogeneous. The influence of a layered tissue architecture on the determination of the scattering and absorption coefficients has been investigated in this study. Reflectance as a function of distance from a point source for a two-layered tissue architecture that simulates skin overlying fat was calculated by using a Monte Carlo code. These data were analyzed by using a diffusion theory model for a homogeneous semi-infinite medium to calculate the scatter and absorption coefficients. Depending on the algorithm and the radial distance, the estimated tissue optical properties were different from those of either layer, and under some circumstances, physically impossible. In addition, the sensitivity and cress talk of the estimated optical properties to changes in input optical properties were calculated for different layered geometries.For typical optical properties of skin, the sensitivity to changes in optical properties is highly dependent on the layered architecture, the measurement distance, and the fitting algorithm. Furthermore, a change in the input absorption coefficient may result in an apparent change in the measured scatter coefficient, and a change in the input scatter coefficient may result in an apparent change in the measured adsorption coefficient.#1998 Optical Society of America OCIS codes: 170.6930, 120.5700, 290.1990.
机译:大多数用于非侵入性地测量组织光学特性的仪器都采用数据分析算法,该算法依赖于简化的假设,即组织是半无限且均匀的。在这项研究中已经研究了分层组织结构对散射和吸收系数确定的影响。对于两层组织结构(模拟皮肤上皮脂肪),通过使用蒙特卡洛代码来计算反射率与距点源的距离的函数。通过使用扩散理论模型对均质半无限介质进行分析,以计算散射系数和吸收系数。取决于算法和径向距离,估计的组织光学特性不同于任一层的光学特性,并且在某些情况下在物理上是不可能的。此外,还针对不同的分层几何结构计算了估计的光学特性对输入光学特性变化的敏感性和波动性。对于典型的皮肤光学特性,光学特性变化的敏感性高度依赖于分层体系结构,测量距离和拟合算法。此外,输入吸收系数的变化可能会导致测得的散射系数发生明显变化,而输入散射系数的变化可能会导致测得的吸附系数发生明显变化。#1998美国光学学会OCIS代码: 170.6930、120.5700、290.1990。

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