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Most existing X-ray computed tomography (CT) techniques work in single-mounted mode and need to scan the inspected objects one by one. It is time-consuming and not acceptable for the inspection in a large scale. In this paper, we report a multi-mounted CT method and its first engineering implementation. It consists of a multi-mounted scanning geometry and the corresponding algebraic iterative reconstruction algorithm. This approach permits the CT rotation scanning of multiple objects simultaneously without the increase of penetration thickness and the signal crosstalk. Compared with the conventional single-mounted methods, it has the potential to improve the imaging efficiency and suppress the artifacts from the beam hardening and the scatter. This work comprises a numerical study of the method and its experimental verification using a dataset measured with a developed multi-mounted X-ray CT prototype system. We believe that this technique is of particular interest for pushing the engineering applications of X-ray CT.
Phantoms, Imaging, Science, Q, R, Image Processing, Computer-Assisted, Medicine, Artifacts, Tomography, X-Ray Computed, Algorithms, Research Article
Phantoms, Imaging, Science, Q, R, Image Processing, Computer-Assisted, Medicine, Artifacts, Tomography, X-Ray Computed, Algorithms, Research Article
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