Accuracy of photon-counting detector CT-based iodine maps for myocardial late enhancement detection.
retrospective_cohort · Level III
Where this comes from
- Record sourced from PubMed, PMID 40310540.
- Also identified by DOI 10.1007/s00330-025-11622-0 and PMC identifier 12559134.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
To evaluate the diagnostic accuracy of iodine maps from photon-counting detector (PCD) CT in detecting myocardial late enhancement compared to late gadolinium enhancement (LGE)-MRI. In this retrospective analysis of a prospective cohort, patients underwent cardiac MRI with LGE followed by late iodine enhancement (LIE)-CT using dual-source PCD-CT. LIE-CT was performed 5 min post-intravenous administration of 100 mL iopromide (370 mg I/mL) using an ECG-triggered sequential protocol with full spectral capabilities (120 kVp, 144 × 0.4 mm collimation). Iodine maps were reconstructed with a quantitative kernel (Qr40) and iterative reconstruction. Two radiologists independently rated image quality on a four-point scale (1: "poor" to 4: "excellent"). Diagnostic performance was assessed per-patient and per-segment using LGE-MRI as reference, and inter-reader agreement was analyzed using Cohen's kappa (κ). The study included 27 patients (52% female; mean age 52.9 ± 17.2 years). Twelve (44%) had positive LGE, with 87/459 (19%) myocardial segments affected. Image quality was rated as good, with no significant differences between readers (median 3 [2-4] vs 3 [3-4]; p = 0.058). Per-patient sensitivities were 100% and 91.7%, specificities 73.3% and 80.0%, and accuracies 85.2%, respectively. Per-segment sensitivities, specificities, and accuracies were 74.7%, 94.9%, and 91.1% (reader 1) and 66.7%, 96.4%, and 90.7% (reader 2). Substantial inter-reader agreement was observed (κ = 0.70 per patient, 0.63 per segment). Iodine maps from PCD-CT demonstrate high diagnostic accuracy for assessing myocardial late enhancement, with substantial inter-reader agreement. These findings suggest that PCD-CT may serve as a valuable alternative to LGE-MRI. Question Can PCD CT iodine maps detect myocardial late enhancement with accuracy comparable to LGE-MRI? Findings PCD-CT iodine maps achieved high accuracy (85.2% per patient, > 90% per segment) with substantial inter-reader agreement. Clinical relevance PCD-CT iodine maps offer a valuable alternative to LGE-MRI for myocardial late enhancement assessment, especially for patients with contraindications to MRI.
Medical subject headings
- Tomography, X-Ray Computed
- Iohexol