Imaging Inflammation: Epicardial Fat Density as an Imaging Marker of Cardiovascular Risk. [PDF]
Abbas N, Budoff M, Lakshmanan S.
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Computed tomography-based assessment of pericoronary adipose tissue in cardiovascular diseases: Diagnostic and prognostic implications. [PDF]
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Editorial: What We See Through Cardiac Imaging. [PDF]
Pergola V, Perazzolo Marra M.
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Plaques Do Not Act Alone: Time to Redefine Coronary Vulnerability from Lesion to Phenotype. [PDF]
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Uterine Angiomyolipoma Presenting as a Rapidly Growing Uterine Mass in a Postmenopausal Woman. [PDF]
Song DH, An HJ, Baek JC.
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Correlation Between Fat Attenuation Index and Plaque Parameters in Coronary CT Angiography: An Observational Study in Stable Coronary Artery Disease. [PDF]
Guo T, Wang XP, Xia R, Gu Z, Dou XF.
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Epicardial Adipose Tissue: A Multimodal Imaging Diagnostic Perspective. [PDF]
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Deep Learning-based Post Hoc CT Denoising for the Coronary Perivascular Fat Attenuation Index
Academic Radiology, 2023Coronary inflammation related to high-risk hemorrhagic plaques can be captured by the perivascular fat attenuation index (FAI) using coronary computed tomography angiography (CCTA). Since the FAI is susceptible to image noise, we believe deep learning (DL)-based post hoc noise reduction can improve diagnostic capability.
Tatsuya Nishii +12 more
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<b><i>Objectives:</i></b> This study aimed to evaluate coronary inflammation by measuring the perivascular fat attenuation index (FAI) and quantify the atherosclerosis burden in patients with psoriasis and control individuals without psoriasis based on coronary computed tomography angiography (CCTA) images.
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