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使用累积量近似辐射传输法研究浑浊介质中的光子迁移。

Photon migration in turbid media using a cumulant approximation to radiative transfer.

作者信息

Xu Min, Cai W, Lax M, Alfano R R

机构信息

Institute for Ultrafast Spectroscopy and Lasers, New York State Center of Advanced Technology for Ultrafast Photonics, New York, NY 10031, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Jun;65(6 Pt 2):066609. doi: 10.1103/PhysRevE.65.066609. Epub 2002 Jun 18.

Abstract

A photon transport model for light migration in turbid media based on a cumulant approximation to radiative transfer is presented for image reconstruction inside an infinite medium or a bounded medium with a planar geometry. This model treats weak inhomogeneities through a Born approximation of the Boltzmann radiative transfer equation and uses the second-order cumulant solution of photon density to the Boltzmann equation as the Green's function for the uniform background. It provides the correct behavior of photon migration at early times and reduces at long times to the center-moved diffusion approximation. At early times, it agrees much better with the result from the Monte Carlo simulation than the diffusion approximation. Both approximations agree well with the Monte Carlo simulation at later times. The weight function for image reconstruction under this proposed model is shown to have a strong dependence at both early and later times on absorption and/or scattering inhomogeneities located in the propagation direction of and close to the source, or in the field of view of and close to the detector. This effect originates from the initial ballistic motion of incident photons, which is substantially underestimated by the diffusion approximation.

摘要

提出了一种基于辐射传输累积量近似的混浊介质中光传播的光子输运模型,用于无限介质或具有平面几何形状的有界介质内部的图像重建。该模型通过玻尔兹曼辐射传输方程的玻恩近似处理弱不均匀性,并将光子密度对玻尔兹曼方程的二阶累积量解用作均匀背景的格林函数。它在早期提供了光子迁移的正确行为,在长时间时简化为中心移动扩散近似。在早期,它与蒙特卡罗模拟结果的吻合程度比扩散近似要好得多。两种近似在后期都与蒙特卡罗模拟结果吻合得很好。在该模型下,用于图像重建的权重函数在早期和后期都强烈依赖于位于源传播方向附近且靠近源的吸收和/或散射不均匀性,或者位于探测器视场附近且靠近探测器的吸收和/或散射不均匀性。这种效应源于入射光子的初始弹道运动,而扩散近似大大低估了这种运动。

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