ArticleEuropean radiology2026
Motion compensated reconstruction improves image quality and interpretability of dual-layer coronary CT angiography.
Article in European radiology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.
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Who cites it
2 citing papers in PubMed.
- Motion correction algorithm improves right coronary artery image quality at heart rates > 75 bpm in non-ECG-gated coronary CT angiography.Journal of applied clinical medical physics · 2026Article
- Clinical evaluation of a motion correction software based on partial angle reconstruction in coronary CT angiography.The international journal of cardiovascular imaging · 2026Article
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8 authors.
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Abstract
objectivesReducing motion artifacts in coronary computed tomography angiography (CCTA) is essential for accurate coronary artery disease assessment. We evaluated the clinical performance of a motion-compensated reconstruction (MCR) using subjective image quality (SIQ) and interpretability of CCTA at varying heart rates (HR). MATERIALS AND
methodsWe retrospectively identified 150 patients, grouped by HR (≤ 60, 60-69, ≥ 70 bpm, n = 50 each), referred for prospective ECG-gated CCTA on a spectral dual-layer CT. Two blinded observers independently assessed SIQ on a per-segment (≥ 1.5 mm) and per-patient level using a 4-point Likert scale in 18 coronary segments (78% RR-interval). Sufficient diagnostic interpretability was defined as SIQ ≥ 2. Per-vessel scores were calculated excluding side branch segments. Per-segment SIQ interobserver agreement was assessed using Cohen's Weighted Kappa. Between MCR and standard reconstruction (SR) at 78% RR-interval, SIQ was compared with Wilcoxon signed-rank tests and diagnostic interpretability and HR-categories using McNemar tests.
resultsMean age was 57 (50-64) years, with 50% men, and 1970 included segments. Interobserver agreement was 0.80 for SR and 0.77 for MCR. Positive trends of improved SIQ were seen across all HR-categories and levels, with significant improvements in all but ≥ 70 bpm on a patient level (p = 0.22). Likewise, positive trends were seen for diagnostic interpretability across all levels and HR-categories with significant improvements at the per-segment level for HR > 60 bpm and per-patient level for 61-69 bpm.
conclusionCompared to the standard reconstruction at 78% RR-interval, MCR significantly improves SIQ and diagnostic interpretability in patients referred for CCTA in most HRs and major vessels (≥ 1.5 mm). KEY POINTS: Question Motion artifacts hinder the assessment of coronary arteries on coronary CT angiography (CCTA), leading to more non-diagnostic segments or scans. Findings Compared to the standard reconstruction 78% RR-interval, motion compensated reconstruction (MCR) significantly improves subjective image quality (SIQ) and diagnostic interpretability across heart rate categories. Clinical relevance By integrating multi-phase data into an optimized single-phase reconstruction with improved SIQ and diagnostic interpretability, MCR may reduce the need for multi-phase assessments when the target phase is non-diagnostic.
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