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首页> 外文期刊>IEEE Transactions on Nuclear Science >Noise propagation in diffraction tomography: comparison of conventional algorithms with a new reconstruction algorithm
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Noise propagation in diffraction tomography: comparison of conventional algorithms with a new reconstruction algorithm

机译:衍射层析成像中的噪声传播:传统算法与新重构算法的比较

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摘要

In ultrasonic diffraction tomography, ultrasonic waves are used to probe the object of interest at various angles. The incident waves scatter when encountering inhomogeneities, unlike conventional X-ray CT. Theoretically, when the scattering inhomogeneities are considered weak, the scattering object can be reconstructed by algorithms developed from a generalized central slice theorem. The authors develop a hybrid algorithm for reconstruction of a scattering object by transforming the scattered data into a conventional X-ray-like sinogram thus allowing standard X-ray reconstruction algorithms, such as filtered back-projection, to be applied. The authors investigate the statistical properties of the filtered back-propagation, direct Fourier, and newly proposed hybrid reconstruction algorithms by performing analytical as well as numerical studies.
机译:在超声衍射层析成像中,超声波用于以各种角度探测感兴趣的对象。与传统的X射线CT不同,入射波在遇到不均匀性时会散射。从理论上讲,当认为散射不均匀性较弱时,可以使用从广义中心切片定理开发的算法来重建散射对象。作者开发了一种混合算法,用于通过将散射数据转换为常规的X射线状正弦图来重建散射对象,从而允许应用标准的X射线重建算法,例如滤波后的反投影。作者通过进行分析和数值研究来研究滤波后的反向传播,直接傅立叶和新提出的混合重建算法的统计特性。

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