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August 17, 2025Life13 citationsOpen Access

Assessment of the Association Between Coronary Artery Calcification, Plaque Vulnerability, and Perivascular Inflammation via Coronary CT Angiography

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BMB MatyasIBImre BenedekNRNóra Raț

Key Points

  • Increased coronary artery calcification correlates with greater plaque vulnerability and inflammation, indicating a higher risk of cardiovascular events.
  • Patients with low or zero calcium scores still showed signs of vulnerable plaques and inflammation, revealing limitations of traditional scoring systems.
  • Advanced coronary CT angiography techniques allowed for detailed assessment of plaque characteristics, highlighting the importance of comprehensive imaging.
  • This analysis underscores the need for integrating inflammatory markers in assessing atherosclerosis to enhance clinical decision-making outcomes.

Abstract

Background: Coronary artery calcium (CAC) scores are a widely used surrogate marker for atherosclerotic burden, but they do not fully reflect plaque vulnerability or coronary inflammation. This study aimed to evaluate the relationship between CACs, coronary plaque characteristics, and perivascular inflammatory activity using advanced CCTA and CaRi-Heart® analysis. Methods: A total of 250 patients with no prior cardiovascular disease were retrospectively evaluated and stratified by CACs into three groups: 0 (n = 28), 1–100 (n = 121), and >100 (n = 101). Coronary plaque morphology, high-risk plaque (HRP) features, CAD-RADS scores, and AI-derived fat attenuation index (FAI) centiles were assessed. Results: Significant differences across CAC categories were observed for several key parameters. The number of diseased coronary segments increased markedly (from 1.39 ± 1.10 vs. 2.97 ± 1.57 vs. 3.94 ± 2.10; p < 0.0001, one-way ANOVA). A similar upward trend was seen for segment involvement scores, HRP prevalence, and the proportions of mixed and calcified plaque components. Regression analysis demonstrated that CACs correlated significantly with segment burden (r2 = 0.2520), CAD-RADS (r2 = 0.1352), and the FAI score centile (r2 = 0.0568). Conclusions: This study highlights the limitations of CACs as a standalone risk stratification tool. Vulnerable and inflamed plaques may already be present in patients with low or zero CACs. Integrating CCTA with perivascular FAI mapping enables earlier detection of biologically active atherosclerosis and supports more precise clinical decision-making.

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Cite This Study

Matyas et al. (2025) studied this question.

synapsesocial.com/papers/68a36a360a429f797332e59chttps://doi.org/10.3390/life15081288
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