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Line Integral Retrieval and Reconstruction for X-Ray Fan-Beam Differential Phase Contrast CT

机译:X射线扇束微分相衬CT的线积分检索和重建

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A reconstruction technique for X-ray fan-beam differential phase-contrast computed tomography (DPC-CT) was reported in this paper. It consists of two steps which are line integral retrieval from the recorded DPC-CT projections and image reconstruction. The first step is performed using a retrieval filter which roots in the derivative property of Fourier transform and takes into account the differential nature of DPC-CT projections. The second step is implemented by the classical fan-beam absorption-contrast filtered back-projection (FBP) algorithms. This work comprises a numerical study of the method and its experimental verification using a dataset measured with an X-ray DPC-CT system consisted of a three-grating interferometer and a mini-focus x-ray tube source. The results indicate that normalized root square error of the proposed method is 0.2532 and the reconstruction accuracy is improved 87% compared with direct FBP reconstruction.
机译:本文报道了一种重建X射线扇束微分相衬计算机断层扫描技术(DPC-CT)的技术。它包括两个步骤,分别是从记录的DPC-CT投影中进行线积分检索和图像重建。第一步是使用检索过滤器执行的,该过滤器基于傅立叶变换的导数属性,并考虑了DPC-CT投影的微分性质。第二步通过经典的扇形光束吸收对比滤波反投影(FBP)算法实现。这项工作包括对该方法的数值研究及其使用由X射线DPC-CT系统测量的数据集进行的实验验证,该系统由三光栅干涉仪和微型聚焦X射线管源组成。结果表明,与直接FBP重建相比,该方法的归一化平方根误差为0.2532,重建精度提高了87%。

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