漫反射光学成像
算法
光子扩散
计算机科学
反问题
光学
光子
还原(数学)
迭代重建
脉搏(音乐)
断层摄影术
分布(数学)
物理
人工智能
数学
数学分析
探测器
几何学
光源
作者
Feng Gao,Yukari Tanikawa,Huijuan Zhao,Yukio Yamada
出处
期刊:Applied optics-OT
[Optica Publishing Group]
日期:2002-12-01
卷期号:41 (34): 7346-7346
被引量:35
摘要
Although a foil three-dimensional (3-D) reconstruction with both 3-D forward and inverse models provide, the optimal solution for diffuse optical tomography (DOT), because of the 3-D nature of photon diffusion in tissue, it is computationally costly for both memory requirement and execution time in a conventional computing environment. Thus in practice there is motivation to develop an image reconstruction algorithm with dimensional reduction based on some modeling approximations. Here we have implemented a semi-3-D modified generalized pulse spectrum technique for time-resolved DOT, where a two-dimensional (2-D) distribution of optical properties is approximately assumed, while we retain 3-D distribution of photon migration in tissue. We have validated the proposed algorithm by reconstructing 3-D structural test objects from both numerically simulated and experimental date. We demonstrate our algorithm by comparing it with the calibrated 2-D reconstruction that is in widespread use as a shortcut to 3-D imaging and proving that the semi-3-D algorithm outperforms the calibrated 2-D algorithm.
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