论文标题
X射线边缘照明加速迭代断层造影重建
Accelerated iterative tomographic reconstruction with x-ray edge illumination
论文作者
论文摘要
与标准层析成像重建相比,迭代方法提供了考虑外部实验影响的可能性,从而抑制相关的人工制品。但是,在迭代正向模型中包含相应的参数通常会导致更长的计算时间。在这里,我们基于边缘照明原理对相敏感的X射线成像进行实验证明,这些原理不充分地采样照明曲线会导致层析成像重建中的环形伪像。我们改为利用适当采样的照明曲线,这使我们能够从正向模型中消除相应的参数并大大提高了计算速度。此外,与标准的非文字单射击方法相比,我们证明了迭代方法的空间分辨率的30 \%改善。此外,我们报告了我们的迭代方法的数值实施的一些重大改进,我们可以通过本出版物在线提供。最后,我们表明,实验和算法进步的组合导致总速度增加一个数量级,并改善了重建中噪声比的对比度。
Compared to standard tomographic reconstruction, iterative approaches offer the possibility to account for extraneous experimental influences, which allows for a suppression of related artifacts. However, the inclusion of corresponding parameters in the iterative forward model typically leads to longer computation times. Here, we demonstrate experimentally for phase sensitive X-ray imaging based on the edge illumination principle that inadequately sampled illumination curves result in ring artifacts in tomographic reconstructions. We take advantage of appropriately sampled illumination curves instead, which enables us to eliminate the corresponding parameter from the forward model and substantially increase computational speed. In addition, we demonstrate a 30\% improvement in spatial resolution of the iterative approach compared with the standard non-iterative single shot approach. Further, we report on several significant improvements in our numerical implementation of the iterative approach, which we make available online with this publication. Finally, we show that the combination of both experimental and algorithmic advancement lead to a total speed increase by one order of magnitude and an improved contrast to noise ratio in the reconstructions.