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Updated: Sep 5, 2026

Neutron Radiography and Computed Tomography of Biological Systems at the Oak Ridge National Laboratory's High Flux Isotope Reactor
Published on: May 7, 2021
Path-length-aware sinogram completion via direct moment enforcement for metal artifact reduction in X-ray CT
1Hanbat National University, 125, Dongseo-daero, Yuseong-gu, Daejeon, 34158, Korea (the Republic of).
Abstract:
High-density metallic objects often produce missing or severely corrupted projection data, resulting in strong streak artifacts in X-ray CT images. In this paper, we propose a path-length-aware sinogram completion framework that combines interpolation in the mean attenuation domain with direct enforcement of low-order Helgason-Ludwig consistency conditions. The missing projections are first estimated using a Hermite-type interpolation that explicitly accounts for X-ray path length. Moment consistency is then restored through a probabilistic perturbation scheme based on compactly supported probability density functions, avoiding the need for solving a large-scale constrained optimization problem. Numerical experiments using both a simulated phantom and a dental CT model demonstrate that the proposed method achieves improved sinogram consistency and better image quality than LI-MAR and NMAR while preserving important anatomical structures. The proposed framework provides an efficient and physically motivated approach for metal artifact reduction in X-ray CT.
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