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Reducing artifacts from total hip replacements in dual layer detector CT: Combination of virtual monoenergetic images and orthopedic metal artifact reduction

Authors :
Kai Roman Laukamp
Simon Lennartz
Nuran Abdullayev
Nils Grosse Hokamp
David Maintz
David Zopfs
Jan Borggrefe
Victor Neuhaus
Source :
European Journal of Radiology. 111:14-20
Publication Year :
2019
Publisher :
Elsevier BV, 2019.

Abstract

Purpose To evaluate the reduction of artifacts caused by total hip replacements (THR) in dual-layer DECT (DLCT) provided by the combination of virtual monoenergetic images (VMI) and orthopedic metal artifact reduction (MAR). Materials and Methods A total of 24 consecutive patients carrying THR, who received DLCT, were included. Four different images were reconstructed from the same CT dataset: a) conventional images (CI), b) conventional images with orthopedic metal artifact reduction (CIMAR) c) VMI and d) VMI combined with orthopedic metal artifact reduction (VMIMAR). VMI and VMIMAR were reconstructed at 140 keV, 160 keV, 180 keV and 200 keV. Attenuation (HU) and noise (SD) were measured in order to evaluate reduction of hypodense and hyperdense artifacts, evaluate reduction of image noise as well as to calculate contrast-to-noise ratios (CNR). Image quality was additionally rated with regard to: a) extent of artifact reduction and assessment of b) pelvic organs, c) bone and d) muscle adjacent to the metal implants. Statistical analysis was performed using Wilcoxon test. Results VMIMAR at high keV, 140, 160, 180 and 200 keV, led to the greatest reduction of hypodense artifacts in comparison to plain VMI or CIMAR (p Conclusion The combination of VMI and MAR yields strongest reduction of hypo- and hyperdense artifacts caused by total hip replacements in staging DLCT in comparison to each technique by itself.

Details

ISSN :
0720048X
Volume :
111
Database :
OpenAIRE
Journal :
European Journal of Radiology
Accession number :
edsair.doi.dedup.....7fe077adb9af7114bfe0626e72444b9c
Full Text :
https://doi.org/10.1016/j.ejrad.2018.12.008