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Three-dimensional finite-element-based photoacoustic tomography: reconstruction algorithm and simulations.

机译:基于三维有限元的光声层析成像:重建算法和模拟。

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摘要

In this paper, a finite element reconstruction algorithm for three-dimensional photoacoustic tomography is described. The algorithm is based on rigorous iterative solution to the Helmholtz photoacoustic wave equation coupled with regularization techniques and is able to recover both the images of absorbed optical energy density and acoustic speed simultaneously. The algorithm is tested using various numerical examples that mimic cancer detection and joint imaging. The results show that the algorithm is able to reconstruct photoacoustic images quantitatively in terms of the location, size, optical and acoustic properties of the target, and background media for various examples examined.
机译:本文描述了三维光声层析成像的有限元重构算法。该算法基于对亥姆霍兹光声波方程的严格迭代解并结合了正则化技术,能够同时恢复吸收的光能密度和声速图像。使用模拟癌症检测和关节成像的各种数值示例对算法进行了测试。结果表明,对于所检查的各种示例,该算法能够根据目标的位置,大小,光学和声学特性以及背景媒体定量地重建光声图像。

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