ArticleEuropean radiology2025
The pericoronary adipose tissue attenuation in CT strongly depends on kernels and iterative reconstructions.
Article in European radiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Who cites it
17 citing papers in PubMed.
- Photon-counting detector CT for follow-up after TACE in hepatocellular carcinoma: effects of reconstruction kernel and sharpness.Abdominal radiology (New York) · 2026Article
- Effect of imaging parameters and clinical characteristics on pericoronary adipose tissue attenuation in patients without coronary plaque.Quantitative imaging in medicine and surgery · 2026Article
- Bedside epicardial adipose tissue assessment in the era of advanced adipose phenotyping.Nature reviews. Cardiology · 2026Article
- Correlation between the coronary computed tomography angiography-derived pericoronary fat attenuation index and coronary artery lesions in Kawasaki disease.Quantitative imaging in medicine and surgery · 2026Article
- Role of systemic and epicardial adipose tissue in cardiometabolic disease.Nature reviews. Cardiology · 2026Review
- Association of Relative Pericoronary Adipose Tissue Attenuation with Coronary Artery Calcification Severity.Medicina (Kaunas, Lithuania) · 2026Article
- Targeting perivascular adipose tissue in vascular aging: innovative translational strategies for disease prevention and monitoring.Apoptosis : an international journal on programmed cell death · 2026Review
- Cardiac imaging using photon counting CT - benefits, challenges and prospects.The international journal of cardiovascular imaging · 2026Review
- Letter to the Editor: Current role of the pericoronary fat attenuation index in breast cancer patients undergoing chemotherapy.European radiology · 2026Article
- Coronary CT angiography evaluation with artificial intelligence for individualized medical treatment of atherosclerosis: a Consensus Statement from the QCI Study Group.Nature reviews. Cardiology · 2026Review
- Pericoronary Adipose Tissue Imaging on Coronary CT Angiography: From Fat Attenuation Index to Radiomic Risk Phenotyping.BioMed research international · 2026Review
- Association Between Pericoronary Fat Attenuation Index and High-Risk Plaque Features Assessed by Photon-Counting CT.Journal of inflammation research · 2026Article
- Photon counting CT improves coronary stent imaging and fat attenuation index assessment across reconstruction modes.European journal of radiology open · 2025Article
- Serial Change of Perivascular Fat Attenuation Index in a Case of Spontaneous Coronary Artery Dissection Involving the Proximal Left Coronary Artery.Internal medicine (Tokyo, Japan) · 2025Article
- Computed Tomography Advancements in Plaque Analysis: From Histology to Comprehensive Plaque Burden Assessment.Echocardiography (Mount Kisco, N.Y.) · 2025Review
- Reducing contrast media and radiation dose in CT angiography at low tube voltage: animal study with photon-counting detector CT.European radiology experimental · 2025Article
- Value of Ultrahigh-Resolution Photon-Counting Detector Computed Tomography in Cardiac Imaging.Echocardiography (Mount Kisco, N.Y.) · 2025Review
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8 authors.
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Abstract
objectivesTo investigate the influence of kernels and iterative reconstructions on pericoronary adipose tissue (PCAT) attenuation in coronary CT angiography (CCTA). MATERIALS AND
methodsTwenty otherwise healthy subjects (16 females; median age 52 years) with atypical chest pain, low risk of coronary artery disease (CAD), and without CAD in photon-counting detector CCTA were included. Images were reconstructed with a quantitative smooth (Qr36) and three vascular kernels of increasing sharpness levels (Bv36, Bv44, Bv56). Quantum iterative reconstruction (QIR) was either switched-off (QIRoff) or was used with strength levels 2 and 4. The fat-attenuation-index (FAI) of the PCAT surrounding the right coronary artery was calculated in each dataset. Histograms of FAI measurements were created. Intra- and inter-reader agreements were determined. A CT edge phantom was used to determine the edge spread function (ESF) for the same datasets.
resultsIntra- and inter-reader agreement of FAI was excellent (intra-class correlation coefficient = 0.99 and 0.98, respectively). Significant differences in FAI were observed depending on the kernel and iterative reconstruction strength level (each, p < 0.001), with considerable inter-individual variation up to 34 HU and intra-individual variation up to 33 HU, depending on kernels and iterative reconstruction levels. The ESFs showed a reduced range of edge-smoothing with increasing kernel sharpness, causing an FAI decrease. Histogram analyses revealed a narrower peak of PCAT values with increasing iterative reconstruction levels, causing a FAI increase.
conclusionsPCAT attenuation determined with CCTA heavily depends on kernels and iterative reconstruction levels both within and across subjects. Standardization of CT reconstruction parameters is mandatory for FAI studies to enable meaningful interpretations. KEY POINTS: Question Do kernels and iterative reconstructions influence pericoronary adipose tissue (PCAT) attenuation in coronary CT angiography (CCTA)? Findings Significant differences in fat-attenuation-index (FAI) were observed depending on the kernel and iterative reconstruction strength level with considerable inter- and intra-individual variation. Clinical relevance PCAT attenuation heavily depends on kernels and iterative reconstructions requiring CT reconstruction parameter standardization to enable meaningful interpretations of fat-attenuation differences across subjects.
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