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Updated: Jan 11, 2026

In Vivo Quantitative Assessment of Myocardial Structure, Function, Perfusion and Viability Using Cardiac Micro-computed Tomography
Published on: February 16, 2016
Photon-counting detector computed tomography compared with cardiac magnetic resonance imaging for myocardial
Konstantin Klambauer1, Andrea Biondo1, Ernst Klotz2
1Diagnostic and Interventional Radiology, University Hospital Zurich, University of Zurich, Zurich, Switzerland.
Abstract:
Spontaneous coronary artery dissection (SCAD) may cause myocardial infarction. Photon-counting detector computed tomography (PCD-CT) with late iodine enhancement (LIE) imaging enables myocardial extracellular volume (ECV) quantification. In this single-center, prospective study, we quantified myocardial ECV in patients with SCAD using LIE PCD-CT (n = 20 patients), and compared results with CMR (n = 13 patients). Global ECVCT was quantified in the entire myocardium; lesion ECVCT was quantified using a threshold-based approach with lesions exceeding an ECVCT of 40%. Relative lesion volume was calculated as the proportion of lesion to total myocardial volume. Global ECVCMR was calculated across all myocardial segments, lesion ECVCMR was derived from manual segmentation. In the 20 patients, lesion ECVCT was 45.2% (IQR 44.2-46.8%) compared to a global ECVCT of 28.5 ± 5.3%. Relative lesion volume strongly correlated with global ECVCT (ρ = 0.938, P < 0.001). A global ECVCT cut-off of 28.5% predicted relative lesion volumes < 5% with an AUC of 0.956 (95% CI 0.752-0.999) and a PPV of 82%. Global ECVCT (28.0 ± 5.2%) and global ECVCMR (29.3 ± 4.2%) was similar (P = 0.085, mean difference 1.4%, 95% limits of agreement: - 4.2 to 7.0%). Lesion ECVCT (45.2%, IQR 44.6-46.8) and lesion ECVCMR (45.0%, IQR 39.4-48.6) was similar (P = 0.340). In conclusion, LIE PCD-CT enables quantitative myocardial ECV assessment in SCAD patients, showing a good agreement with CMR.
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