Literature DB >> 26839905

Complementary contrast media for metal artifact reduction in dual-energy computed tomography.

Jack W Lambert1, Peter M Edic2, Paul F FitzGerald2, Andrew S Torres2, Benjamin M Yeh1.   

Abstract

Metal artifacts have been a problem associated with computed tomography (CT) since its introduction. Recent techniques to mitigate this problem have included utilization of high-energy (keV) virtual monochromatic spectral (VMS) images, produced via dual-energy CT (DECT). A problem with these high-keV images is that contrast enhancement provided by all commercially available contrast media is severely reduced. Contrast agents based on higher atomic number elements can maintain contrast at the higher energy levels where artifacts are reduced. This study evaluated three such candidate elements: bismuth, tantalum, and tungsten, as well as two conventional contrast elements: iodine and barium. A water-based phantom with vials containing these five elements in solution, as well as different artifact-producing metal structures, was scanned with a DECT scanner capable of rapid operating voltage switching. In the VMS datasets, substantial reductions in the contrast were observed for iodine and barium, which suffered from contrast reductions of 97% and 91%, respectively, at 140 versus 40 keV. In comparison under the same conditions, the candidate agents demonstrated contrast enhancement reductions of only 20%, 29%, and 32% for tungsten, tantalum, and bismuth, respectively. At 140 versus 40 keV, metal artifact severity was reduced by 57% to 85% depending on the phantom configuration.

Entities:  

Keywords:  bismuth; contrast agent; dual-energy computed tomography; high-Z; metal artifact; phantom; tantalum; tungsten

Year:  2015        PMID: 26839905      PMCID: PMC4729096          DOI: 10.1117/1.JMI.2.3.033503

Source DB:  PubMed          Journal:  J Med Imaging (Bellingham)        ISSN: 2329-4302


  37 in total

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7.  Metal artifact reduction by dual energy computed tomography using monoenergetic extrapolation.

Authors:  Fabian Bamberg; Alexander Dierks; Konstantin Nikolaou; Maximilian F Reiser; Christoph R Becker; Thorsten R C Johnson
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9.  Biological performance of a size-fractionated core-shell tantalum oxide nanoparticle x-ray contrast agent.

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  5 in total

1.  Noise-optimised virtual monoenergetic imaging of dual-energy CT: effect on metal artefact reduction in patients with lumbar internal fixation.

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2.  The Effect of Patient Diameter on the Dual-Energy Ratio of Selected Contrast-Producing Elements.

Authors:  Jack W Lambert; Paul F FitzGerald; Peter M Edic; Yuxin Sun; Peter J Bonitatibus; Robert E Colborn; Benjamin M Yeh
Journal:  J Comput Assist Tomogr       Date:  2017 May/Jun       Impact factor: 1.826

3.  Improved Calcium Scoring at Dual-Energy Computed Tomography Angiography Using a High-Z Contrast Element and Novel Material Separation Technique.

Authors:  Jack W Lambert; Yuxin Sun; Karen G Ordovas; Robert G Gould; Sizhe Wang; Benjamin M Yeh
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Review 4.  Opportunities for new CT contrast agents to maximize the diagnostic potential of emerging spectral CT technologies.

Authors:  Benjamin M Yeh; Paul F FitzGerald; Peter M Edic; Jack W Lambert; Robert E Colborn; Michael E Marino; Paul M Evans; Jeannette C Roberts; Zhen J Wang; Margaret J Wong; Peter J Bonitatibus
Journal:  Adv Drug Deliv Rev       Date:  2016-09-09       Impact factor: 15.470

5.  An Intravascular Tantalum Oxide-based CT Contrast Agent: Preclinical Evaluation Emulating Overweight and Obese Patient Size.

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Journal:  Radiology       Date:  2018-07-03       Impact factor: 11.105

  5 in total

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