Department of Physics and Astronomy, Ghent University, Gent, Belgium.
J Xray Sci Technol. 2014;22(1):47-61. doi: 10.3233/XST-130408.
A novel reconstruction method is presented to improve the image quality of three dimensional (3D) datasets for samples consisting of only one material and surrounding air, obtained with high resolution X-ray Computed Tomography (μCT). It combines discrete tomography with iterative reconstruction algorithms, it is applicable for routine μCT applications and is referred to as the Experimental Discrete Algebraic Reconstruction Technique (EDART). A fast and intuitive method to estimate the attenuation coefficient and segmentation threshold, in case these are unknown, is included. Experimental results illustrate that EDART allows the improvement of the reconstruction quality as compared to standard iterative reconstruction when few projections are available, without significantly increasing the reconstruction time.
提出了一种新的重建方法,以提高仅由一种材料和周围空气组成的样本的三维(3D)数据集的图像质量,该样本是使用高分辨率 X 射线计算机断层扫描(μCT)获得的。它将离散断层扫描与迭代重建算法相结合,适用于常规 μCT 应用,被称为实验离散代数重建技术(EDART)。本文还包括了一种快速直观的方法来估计衰减系数和分割阈值,如果这些值未知的话。实验结果表明,与标准迭代重建相比,在可用投影较少的情况下,EDART 允许提高重建质量,而不会显著增加重建时间。