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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Three-dimensional radiative transfer tomography for turbid media
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Three-dimensional radiative transfer tomography for turbid media

机译:浑浊介质的三维辐射转移层析成像

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摘要

The photon distribution, as a function of position, angle, and time, is computed using the analytical cumulant solution of the Boltzmann radiative transfer equation (RTE). A linear forward model for light propagation in turbid media for three-dimensional (3-D) optical tomography is formed based on this solution. The model can be used with time resolved, continuous wave (CW), and frequency-domain measurements in parallel geometries. This cumulant forward model (CFM) is more accurate than that based on the diffusion approximation of RTE. An inverse algorithm that incorporates this CFM is developed, based on a fast 3-D hybrid-dual-Fourier tomographic approach using multiple detectors and multiple sources in parallel geometries. The inverse algorithm can produce a 3-D image of a turbid medium with more than 20 000 voxels in 1-2 min using a personal computer. A 3-D image reconstructed from simulated data is presented.
机译:使用Boltzmann辐射传递方程(RTE)的解析累积量,可以计算出作为位置,角度和时间的函数的光子分布。基于此解决方案,形成了用于三维(3-D)光学层析成像的浑浊介质中光传播的线性正向模型。该模型可与时间分辨,连续波(CW)和并行几何中的频域测量一起使用。该累积正向模型(CFM)比基于RTE的扩散近似的模型更为准确。基于快速3D混合双傅里叶层析成像方法,使用了多个探测器和多个平行几何源,开发了一种包含此CFM的逆算法。逆算法可以使用个人计算机在1-2分钟内生成具有2万多个体素的混浊介质的3-D图像。呈现了从模拟数据重建的3D图像。

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