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首页> 外文期刊>IEEE Transactions on Medical Imaging >Full-Wave Iterative Image Reconstruction in Photoacoustic Tomography With Acoustically Inhomogeneous Media
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Full-Wave Iterative Image Reconstruction in Photoacoustic Tomography With Acoustically Inhomogeneous Media

机译:声不均匀介质在光声层析成像中的全波迭代图像重建

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摘要

Existing approaches to image reconstruction in photoacoustic computed tomography (PACT) with acoustically heterogeneous media are limited to weakly varying media, are computationally burdensome, and/or cannot effectively mitigate the effects of measurement data incompleteness and noise. In this work, we develop and investigate a discrete imaging model for PACT that is based on the exact photoacoustic (PA) wave equation and facilitates the circumvention of these limitations. A key contribution of the work is the establishment of a procedure to implement a matched forward and backprojection operator pair associated with the discrete imaging model, which permits application of a wide-range of modern image reconstruction algorithms that can mitigate the effects of data incompleteness and noise. The forward and backprojection operators are based on the k-space pseudospectral method for computing numerical solutions to the PA wave equation in the time domain. The developed reconstruction methodology is investigated by use of both computer-simulated and experimental PACT measurement data.
机译:具有声学异质介质的光声计算机断层摄影(PACT)中图像重建的现有方法仅限于变化不大的介质,计算繁琐和/或无法有效减轻测量数据不完整和噪声的影响。在这项工作中,我们开发和研究PACT的离散成像模型,该模型基于精确的光声(PA)波动方程,并有助于规避这些限制。这项工作的关键贡献在于建立了一个程序,以实现与离散成像模型相关的匹配的正向和反向投影算子对,从而允许应用范围广泛的现代图像重建算法,从而减轻数据不完整和噪声。正投影和反投影算子基于k空间伪谱方法,用于在时域中计算PA波方程的数值解。通过使用计算机模拟和实验的PACT测量数据来研究开发的重建方法。

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