Literature DB >> 23686292

Metal artefact reduction from dental hardware in carotid CT angiography using iterative reconstructions.

Fabian Morsbach1, Moritz Wurnig, Daniel M Kunz, Andreas Krauss, Bernhard Schmidt, Spyros S Kollias, Hatem Alkadhi.   

Abstract

PURPOSE: To determine the value of a metal artefact reduction (MAR) algorithm with iterative reconstructions for dental hardware in carotid CT angiography.
METHODS: Twenty-four patients (six of which were women; mean age 70 ± 12 years) with dental hardware undergoing carotid CT angiography were included. Datasets were reconstructed with filtered back projection (FBP) and using a MAR algorithm employing normalisation and an iterative frequency-split (IFS) approach. Three blinded, independent readers measured CT attenuation values and evaluated image quality and degrees of artefacts using axial images, multi-planar reformations (MPRs) and maximal intensity projections (MIP) of the carotid arteries.
RESULTS: CT attenuation values of the internal carotid artery on images with metal artefacts were significantly higher in FBP (324 ± 104HU) datasets compared with those reconstructed with IFS (278 ± 114HU; P < 0.001) and with FBP on images without metal artefacts (293 ± 106HU; P = 0.006). Quality of IFS images was rated significantly higher on axial, MPR and MIP images (P < 0.05, each), and readers found significantly less artefacts impairing the diagnostic confidence of the internal carotid artery (P < 0.05, each).
CONCLUSION: The MAR algorithm with the IFS approach allowed for a significant reduction of artefacts from dental hardware in carotid CT angiography, hereby increasing image quality and improving the accuracy of CT attenuation measurements. KEY POINTS: • CT angiography of the neck has proven value for evaluating carotid disease • Neck CT angiography images are often degraded by artefacts from dental implants • A metal artefact reduction algorithm with iterative reconstruction reduces artefacts significantly • Visualisation of the internal carotid artery is improved.

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Year:  2013        PMID: 23686292     DOI: 10.1007/s00330-013-2885-z

Source DB:  PubMed          Journal:  Eur Radiol        ISSN: 0938-7994            Impact factor:   5.315


  32 in total

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5.  Radiation dose and image quality in intraoperative CT (iCT) angiography of the brain with stereotactic head frames.

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9.  Added value of a single-energy projection-based metal-artifact reduction algorithm for the computed tomography evaluation of oral cavity cancers.

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10.  CT Metal Artifact Reduction in the Spine: Can an Iterative Reconstruction Technique Improve Visualization?

Authors:  A L Kotsenas; G J Michalak; D R DeLone; F E Diehn; K Grant; A F Halaweish; A Krauss; R Raupach; B Schmidt; C H McCollough; J G Fletcher
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