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Metal artifact reduction in cervix brachytherapy with titanium applicators using dual-energy CT through virtual monoenergetic images and an iterative algorithm: A phantom study.

Authors :
Kanani A
Yazdi M
Owrangi AM
Karbasi S
Mosleh-Shirazi MA
Source :
Brachytherapy [Brachytherapy] 2022 Nov-Dec; Vol. 21 (6), pp. 933-942. Date of Electronic Publication: 2022 Aug 04.
Publication Year :
2022

Abstract

Purpose: To evaluate an iterative metal-artifact reduction (iMAR) algorithm, dual-energy CT (DECT) through virtual monoenergetic images (VMI), and a combination of iMAR and DECT for reducing metal artifact severity (AS) induced by Fletcher titanium applicators used in cervix brachytherapy, the efficacy of which are hitherto unreported.<br />Methods and Materials: 120 kV <subscript>p</subscript> single-energy CT (SECT) (Siemens) of BEBIG tandem applicators, varying in shape (straight or curved) and diameter (3.5 mm or 5 mm) in a custom-made water-filled phantom, and their DECT images obtained from extrapolation of 80 kVp and 140 kVp, were reconstructed using four methods: DECT through VMI±iMAR, and SECT±iMAR. The DECT images were reconstructed monoenergetically at 70, 150, and 190 keV. AS was evaluated using measured values and statistical analysis.<br />Results: iMAR, DECT, and combined DECT and iMAR reduced AS (p < 0.05). DECT had a lower AS than SECT, even without iMAR (p < 0.025). SECT+iMAR was more effective than DECT-iMAR with VMI at 70 and 190 keV (p < 0.05), whereas showing no statistically significant difference at 150 keV. With DECT and iMAR combined, AS was reduced more effectively compared to the SECT+iMAR or DECT alone. It also reduced the mean interobserver uncertainty by 0.2 mm.<br />Conclusions: These findings indicate that iMAR reduces the AS caused by Fletcher titanium applicators for both SECT and DECT, a combination of iMAR and DECT is superior to either strategy alone, and at low energies, DECT+iMAR also produces similar artifact reduction. These practical strategies promise more accurate source-position and structure definitions in CT-based gynecological brachytherapy treatment planning.<br /> (Copyright © 2022 American Brachytherapy Society. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1873-1449
Volume :
21
Issue :
6
Database :
MEDLINE
Journal :
Brachytherapy
Publication Type :
Academic Journal
Accession number :
35933273
Full Text :
https://doi.org/10.1016/j.brachy.2022.07.003