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Optimizing carotid plaque visualization: the advantage of subtraction imaging from dual-layer spectral CT.

Created on 21 Jul 2026

Authors

Yuanyuan Wu, Xueke Zhang, Zeyuan Cao, Xin Shen, Shaokun Hu, Dongliang Hu, Yiru Shen, Manman Cui, Duchang Zhai, Xingbiao Chen, Shenghong Ju, Wu Cai

Published in

BMC medical imaging. Jul 21, 2026. Epub Jul 21, 2026.

Abstract

Computed tomography angiography (CTA) has become the primary method for detecting carotid atherosclerosis. However, the visibility of the arterial wall on the CTA is poor because of the high attenuation lumen filled with contrast agent. To optimize the display of the carotid arterial walls, this study proposed a black blood technique by generating subtraction images (CTAsub) based on dual-layer spectral CT, and explored its role in the assessment of carotid atherosclerotic plaques.
CTAsub were generated by subtracting virtual monochrome images (VMI) from virtual non-contrast images (VNC) obtained from SDCT scans. Two senior radiologists and two junior radiologists read conventional CTA images (CTAcon) with and without CTAsub respectively. The inter-reader agreement for plaque classification of each extracranial carotid artery and diagnostic confidence were compared. The extracranial carotid wall visibility, outer margin conspicuity of non-calcified components, signal-to-noise ratio (SNR) and contrast-to-noise ratio (CNR) of the non-calcified components as well as the stenosis rate at the narrowest level were compared between CTAsub and CTAcon. Using high-resolution magnetic resonance imaging (hrMRI) as the standard, the accuracy in plaque burden estimation on CTAcon and CTAsub were compared. The paired t-test and the Wilcoxon signed-rank test were used for the comparison between CTAsub and CTAcon. The Cohen κ value and the intraclass correlation coefficient (ICC) were used to evaluate the consistency.
A total of 119 patients were included in the comparisons between CTAsub and CTAcon and a total of 31 patients were enrolled in the plaque burden comparison between CTA and hrMRI. CTAsub improved the consistency of plaque classification between radiologists and increased their diagnostic confidence. CTAsub also provide better arterial wall visibility and clearer outer margin conspicuity of non-calcified components. The SNR and CNRs of non-calcified components were obviously elevated on CTAsub (SNR: 12.86 ± 6.51 vs. 7.77 ± 4.30; CNRnon-calcified/fat: 33.13 ± 2.65 vs. 24.96 ± 7.90; CNRnon-calcified/muscle: 8.58 ± 4.27 vs. 6.64 ± 4.11, all p < 0.001). Moreover, CTAsub displayed good to excellent consistency with CTAcon in stenosis rate measurement (NASCET: ICC = 0.919; ECST: ICC = 0.889, both p < 0.001) and a more closer estimation of plaque burden to hrMRI than CTAcon(ICC = 0.938 vs. 0.842, p < 0.001).
As a complement to CTAcon, CTAsub not only improves visualization of the extracranial carotid wall and non-calcified plaque components but also enables accurate quantification of stenosis rate and plaque burden. Howerer, CTAsub can not be used alone when calcified components are evaluated.

PMID:
42477570
Bibliographic data and abstract were imported from PubMed on 21 Jul 2026.

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