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April 18, 20260 citationsOpen Access

The potential of high-Z contrast media for vessel visualization near metal implants: a photon-counting detector CT phantom study with virtual monoenergetic images and iterative metal artifact reduction

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KKKonstantin KlambauerTDTristan T. DemmertLMLukas J. Moser

Key Points

  • To evaluate the effectiveness of high-Z contrast media for enhancing vessel visualization near metal implants during CT imaging.
  • Conducted scans using a pelvis phantom with titanium and steel inserts.
  • Employed various contrast media: iodine, bismuth, holmium, tungsten.
  • Reconstructed virtual monoenergetic images across a range of energies (40-190 keV), with and without iterative metal artifact reduction.
  • Measured artifact-adjusted contrast-to-noise ratios across predefined regions of interest.
  • High-Z contrast media provided superior vessel contrast compared to iodine near metal implants.
  • Holmium showed improved vessel contrast at low VMI energy, while tungsten and bismuth performed better at high VMI energy.
  • Iterative metal artifact reduction further enhanced vessel contrast under metal artifact conditions.

Abstract

Background: Metal artifacts in computed tomography (CT) can be reduced with high energy virtual monoenergetic images (VMI) and iterative metal artifact reduction (IMAR) algorithms. At high VMI energies, however, iodinated contrast media show decreased attenuation. High atomic number (high-Z) contrast media potentially preserve vessel contrast near metal implants even at high VMI energies. Hence, the purpose of this study was to assess the effect of high-Z contrast media on vessel visualization near metal implants in photon-counting detector (PCD)-CT across VMI energies, with and without IMAR and for different metal types. Methods: A pelvis phantom containing titanium or steel inserts and contrast media inserts including iodine, bismuth, holmium, or tungsten was scanned using photon-counting detector computed tomography (PCD-CT). VMI (40-190 keV, 1 keV steps) were reconstructed with and without IMAR. Three predefined regions of interest (ROI) were placed in the background (background noise, standard deviation of HU), in the contrast media inserts (vessel attenuation, mean HU), and between the metal and contrast inserts (metal artifacts, defined as standard deviation of HU). An artifact-adjusted contrast-to-noise ratio (CNR) was calculated using background noise, vessel attenuation and metal artifacts, and averaged across three VMI energy ranges: 40-90, 90-140, and 140-190 keV. Peak CNR was the maximum value across all VMI energies. Wilcoxon rank sum tests with Benjamini-Hochberg correction were applied. Conclusions: High-Z contrast media provide superior vessel contrast compared to iodine near metal implants in PCD-CT, both at low VMI energy with holmium and at high VMI energy with tungsten and bismuth, where metal artifacts are additionally reduced. Under metal artifact conditions, vessel contrast can be further improved by applying IMAR.

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Cite This Study

Klambauer et al. (2026) studied this question.

synapsesocial.com/papers/69e320af40886becb653fd10https://doi.org/10.5167/uzh-433682
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