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Computed laminography has become a popular tool to achieve high spatial resolution in three-dimensional imaging of flat, laterally extended objects. This study explores the synergy of synchrotron full-field micro-computed and scanning x-ray fluorescence laminography imaging, along with efficient data analysis software, to enhance x-ray imaging capabilities at beamlines 2-BM and 2-ID-E of the Advanced Photon Source at Argonne National Laboratory. We discuss the advantages of laminography imaging and demonstrate examples of laminography data acquisition and reconstruction for a flat mouse bone section measured at both beamlines. Reconstructed data provided structural information from the full-field micro-computed laminography measurements and elemental distribution from the fluorescence laminography measurements. Dragonfly ORS software was used to produce high-quality interactive volume and multichannel visualizations, facilitating the analysis of the 3D reconstructed data. The proposed integration of these two modalities for efficient structural and elemental analyses of samples holds the potential for substantial advancements in imaging technology.
Conference Presentation
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Pei-Tzu Lee,Fabricio S. Marin,Viktor V. Nikitin, andOlga A. Antipova
"An innovative integration of high-resolution synchrotron x-ray laminography fluorescence imaging", Proc. SPIE 13152, Developments in X-Ray Tomography XV, 1315207 (4 November 2024); https://doi.org/10.1117/12.3028127
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Pei-Tzu Lee, Fabricio S. Marin, Viktor V. Nikitin, Olga A. Antipova, "An innovative integration of high-resolution synchrotron x-ray laminography fluorescence imaging," Proc. SPIE 13152, Developments in X-Ray Tomography XV, 1315207 (4 November 2024); https://doi.org/10.1117/12.3028127