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Modeling diffuse reflectance measurements of light scattered by layered tissues.

机译:对分层组织散射的光的漫反射测量进行建模。

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摘要

In this dissertation, we first present a model for the diffuse reflectance due to a continuous beam incident normally on a half space composed of a uniform scattering and absorbing medium. This model is the result of an asymptotic analysis of the radiative transport equation for strong scattering, weak absorption and a defined beam width. Through comparison with the diffuse reflectance computed using the numerical solution of the radiative transport equation, we show that this diffuse reflectance model gives results that are accurate for small source-detector separation distances.;We then present an explicit model for the diffuse reflectance due to a collimated beam of light incident normally on layered tissues. This model is derived using the corrected diffusion approximation applied to a layered medium, and it takes the form of a convolution with an explicit kernel and the incident beam profile. This model corrects the standard diffusion approximation over all source-detector separation distances provided the beam is sufficiently wide compared to the scattering mean-free path. We validate this model through comparison with Monte Carlo simulations. Then we use this model to estimate the optical properties of an epithelial layer from Monte Carlo simulation data. Using measurements at small source-detector separations and this model, we are able to estimate the absorption coefficient, scattering coefficient and anisotropy factor of epithelial tissues efficiently with reasonable accuracy.;Finally, we present an extension of the corrected diffusion approximation for an obliquely incident beam. This model is formed through a Fourier Series representation in the azimuthal angle which allows us to exhibit the break in axisymmetry when combined with the previous analysis. We validate this model with Monte Carlo simulations. This model can also be written in the form of a convolution of an explicit kernel with the incident beam profile. Additionally, it can be used to improve computation of the optical properties.
机译:在本文中,我们首先提出了一种漫反射率模型,该模型是由于连续光束通常入射在由均匀散射和吸收介质组成的半空间上而引起的。该模型是针对强散射,弱吸收和定义的束宽对辐射传输方程进行渐近分析的结果。通过与使用辐射传输方程数值解计算的漫反射率进行比较,我们表明该漫反射率模型给出的结果对于较小的源-探测器分离距离是准确的;然后我们给出了一个显式的漫反射率模型,其原因在于通常入射到分层组织上的准直光束。该模型是使用应用于层状介质的校正扩散近似导出的,并且采用具有显式核和入射光束轮廓的卷积形式。如果光束与无散射均值路径相比足够宽,该模型将在所有源探测器分离距离上校正标准扩散近似值。我们通过与蒙特卡洛模拟进行比较来验证该模型。然后,我们使用该模型从蒙特卡洛模拟数据估算上皮层的光学性质。通过在小源-检测器间距处的测量和该模型,我们能够以合理的准确度有效估计上皮组织的吸收系数,散射系数和各向异性因子;最后,我们提出了斜入射的校正扩散近似的扩展。光束。该模型是通过傅立叶级数表示法在方位角上形成的,当与先前的分析结合使用时,该模型可以使我们展现出轴对称性的突破。我们使用蒙特卡洛模拟验证该模型。该模型也可以以显式核与入射光束轮廓的卷积形式编写。另外,它可以用来改善光学性能的计算。

著录项

  • 作者

    Rohde, Shelley B.;

  • 作者单位

    University of California, Merced.;

  • 授予单位 University of California, Merced.;
  • 学科 Applied Mathematics.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 81 p.
  • 总页数 81
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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