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Quantitative Boundary Reconstruction from Truncated Phase-Contrast Tomographic Projections

机译:截断相衬层析成像投影的定量边界重建

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Propagation-based phase-contrast tomography is a non-interferometric imaging technique that can reconstruct the complex refractive index distribution of an object. To accomplish such a reconstruction, however, the measured phase-contrast projections must be untruncated. We have demonstrated recently that the mathematical theory of local computed tomography (CT), which was originally developed for absorption CT, can be applied naturally for understanding the problem of reconstructing the location of image boundaries from truncated phase-contrast projections. In this work, we reveal that, for two-dimensional objects, the magnitude of refractive index discontinuities can be reconstructed from truncated phase-contrast projections acquired in the near-Fresnel zone. We show that these magnitudes can be reliably reconstructed using algorithms that were developed originally for local absorption CT.
机译:基于传播的相衬层析成像技术是一种非干涉成像技术,可以重建物体的复杂折射率分布。然而,为了完成这种重构,必须将测量的相衬投影截短。我们最近已经证明,最初为吸收式CT开发的局部计算机断层摄影(CT)数学理论可以自然地应用于理解从截断相衬投影重建图像边界位置的问题。在这项工作中,我们揭示出,对于二维物体,可以从在近菲涅耳区域中获取的截断的相衬投影来重构折射率不连续的大小。我们表明,可以使用最初为局部吸收CT开发的算法来可靠地重建这些幅度。

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