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Metal Artifact Reduction in Cone-Beam Computed Tomography for Head and Neck Radiotherapy
Author(s) -
Korpics Mark,
Johnson Paul,
Patel Rakesh,
Surucu Murat,
Choi Mehee,
Emami Bahman,
Roeske John C.
Publication year - 2016
Publication title -
technology in cancer research and treatment
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.754
H-Index - 63
eISSN - 1533-0338
pISSN - 1533-0346
DOI - 10.1177/1533034615618319
Subject(s) - streak , cone beam computed tomography , imaging phantom , artifact (error) , projection (relational algebra) , interpolation (computer graphics) , reduction (mathematics) , image guided radiation therapy , nuclear medicine , materials science , optics , medical imaging , computer vision , artificial intelligence , computed tomography , computer science , medicine , mathematics , radiology , physics , image (mathematics) , geometry , algorithm
Purpose: To evaluate a method for reducing metal artifacts, arising from dental fillings, on cone-beam computed tomography images.Materials and Methods: A projection interpolation algorithm is applied to cone-beam computed tomography images containing metal artifacts from dental fillings. This technique involves identifying metal regions in individual cone-beam computed tomography projections and interpolating the surrounding values to remove the metal from the projection data. Axial cone-beam computed tomography images are then reconstructed, resulting in a reduction in the streak artifacts produced by the metal. Both phantom and patient imaging data are used to evaluate this technique.Results: The interpolation substitution technique successfully reduced metal artifacts in all cases. Corrected images had fewer or no streak artifacts compared to their noncorrected counterparts. Quantitatively, regions of interest containing the artifacts showed reduced variance in the corrected images versus the uncorrected images. Average pixel values in regions of interest around the metal object were also closer in value to nonmetal regions after artifact reduction. Artifact correction tended to perform better on patient images with less complex metal objects versus those with multiple large dental fillings.Conclusion: The interpolation substitution is potentially an efficient and effective technique for reducing metal artifacts caused by dental fillings on cone-beam computed tomography image. This technique may be effective in reducing such artifacts in patients with head and neck cancer receiving daily image-guided radiotherapy.

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