German Research Center for Artificial Intelligence GmbH (DFKI), 66123 Saarbrücken, Germany; Saarland Informatics Campus, 66123 Saarbrücken, Germany.
Institute of Nanotechnology, Karlsruhe Institute of Technology, Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany; Joint Research Laboratory Nanomaterials, Technische Universität Darmstadt, Jovanka-Bontschits-Straße 2, 64287 Darmstadt, Germany.
Ultramicroscopy. 2018 Aug;191:1-10. doi: 10.1016/j.ultramic.2018.04.001. Epub 2018 Apr 21.
A new method for dealing with incomplete projection sets in electron tomography is proposed. The approach is inspired by exemplar-based inpainting techniques in image processing and heuristically generates data for missing projection directions. The method has been extended to work on three dimensional data. In general, electron tomography reconstructions suffer from elongation artifacts along the beam direction. These artifacts can be seen in the corresponding Fourier domain as a missing wedge. The new method synthetically generates projections for these missing directions with the help of a dictionary based approach that is able to convey both structure and texture at the same time. It constitutes a preprocessing step that can be combined with any tomographic reconstruction algorithm. The new algorithm was applied to phantom data, to a real electron tomography data set taken from a catalyst, as well as to a real dataset containing solely colloidal gold particles. Visually, the synthetic projections, reconstructions, and corresponding Fourier power spectra showed a decrease of the typical missing wedge artifacts. Quantitatively, the inpainting method is capable to reduce missing wedge artifacts and improves tomogram quality with respect to full width half maximum measurements.
提出了一种处理电子断层扫描中不完全投影集的新方法。该方法的灵感来自图像处理中的基于范例的修复技术,并启发式地为缺失的投影方向生成数据。该方法已扩展到三维数据。一般来说,电子断层扫描重建会沿光束方向出现伸长伪影。在相应的傅立叶域中,可以看到这些伪影是一个缺失的楔形。新方法借助基于字典的方法为这些缺失的方向综合生成投影,该方法能够同时传达结构和纹理。它是一个预处理步骤,可以与任何断层扫描重建算法结合使用。新算法应用于幻影数据、从催化剂中获取的真实电子断层扫描数据集以及仅包含胶体金颗粒的真实数据集。从视觉上看,合成的投影、重建和相应的傅立叶功率谱显示出典型的缺失楔形伪影的减少。从数量上看,该修复方法能够减少缺失楔形伪影,并提高断层图像质量,体现在全宽半最大值测量上。