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Journal Abstract Search


101 related items for PubMed ID: 28290345

  • 1. First experiences with model based iterative reconstructions influence on quantitative plaque volume and intensity measurements in coronary computed tomography angiography.
    Precht H, Kitslaar PH, Broersen A, Gerke O, Dijkstra J, Thygesen J, Egstrup K, Lambrechtsen J.
    Radiography (Lond); 2017 Feb; 23(1):77-79. PubMed ID: 28290345
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  • 2. Influence of Adaptive Statistical Iterative Reconstruction on coronary plaque analysis in coronary computed tomography angiography.
    Precht H, Kitslaar PH, Broersen A, Dijkstra J, Gerke O, Thygesen J, Egstrup K, Lambrechtsen J.
    J Cardiovasc Comput Tomogr; 2016 Feb; 10(6):507-516. PubMed ID: 27769663
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  • 3. Iterative Image Reconstruction Improves the Accuracy of Automated Plaque Burden Assessment in Coronary CT Angiography: A Comparison With Intravascular Ultrasound.
    Puchner SB, Ferencik M, Maehara A, Stolzmann P, Ma S, Do S, Kauczor HU, Mintz GS, Hoffmann U, Schlett CL.
    AJR Am J Roentgenol; 2017 Apr; 208(4):777-784. PubMed ID: 28177655
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  • 4. Image quality in coronary computed tomography angiography: influence of adaptive statistical iterative reconstruction at various radiation dose levels.
    Precht H, Gerke O, Thygesen J, Egstrup K, Auscher S, Waaler D, Lambrechtsen J.
    Acta Radiol; 2018 Oct; 59(10):1194-1202. PubMed ID: 29359950
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  • 5. Assessment of Image Quality of Coronary Computed Tomography Angiography in Obese Patients by Comparing Deep Learning Image Reconstruction With Adaptive Statistical Iterative Reconstruction Veo.
    Wang H, Wang R, Li Y, Zhou Z, Gao Y, Bo K, Yu M, Sun Z, Xu L.
    J Comput Assist Tomogr; 2018 Oct; 46(1):34-40. PubMed ID: 35099134
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  • 7. Iterative image reconstruction algorithms in coronary CT angiography improve the detection of lipid-core plaque--a comparison with histology.
    Puchner SB, Ferencik M, Maurovich-Horvat P, Nakano M, Otsuka F, Kauczor HU, Virmani R, Hoffmann U, Schlett CL.
    Eur Radiol; 2015 Jan; 25(1):15-23. PubMed ID: 25182630
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  • 9. Radiation dose reduction with deep-learning image reconstruction for coronary computed tomography angiography.
    Benz DC, Ersözlü S, Mojon FLA, Messerli M, Mitulla AK, Ciancone D, Kenkel D, Schaab JA, Gebhard C, Pazhenkottil AP, Kaufmann PA, Buechel RR.
    Eur Radiol; 2022 Apr; 32(4):2620-2628. PubMed ID: 34792635
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  • 11. Standard and reduced radiation dose liver CT images: adaptive statistical iterative reconstruction versus model-based iterative reconstruction-comparison of findings and image quality.
    Shuman WP, Chan KT, Busey JM, Mitsumori LM, Choi E, Koprowicz KM, Kanal KM.
    Radiology; 2014 Dec; 273(3):793-800. PubMed ID: 25170546
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  • 13. Adaptive Statistical Iterative Reconstruction-V: Impact on Image Quality in Ultralow-Dose Coronary Computed Tomography Angiography.
    Benz DC, Gräni C, Mikulicic F, Vontobel J, Fuchs TA, Possner M, Clerc OF, Stehli J, Gaemperli O, Pazhenkottil AP, Buechel RR, Kaufmann PA.
    J Comput Assist Tomogr; 2016 Dec; 40(6):958-963. PubMed ID: 27560012
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  • 14. The effect of iterative image reconstruction algorithms on the feasibility of automated plaque assessment in coronary CT angiography.
    Puchner SB, Ferencik M, Karolyi M, Do S, Maurovich-Horvat P, Kauczor HU, Hoffmann U, Schlett CL.
    Int J Cardiovasc Imaging; 2013 Dec; 29(8):1879-88. PubMed ID: 23990390
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  • 19. Impact of model-based iterative reconstruction (MBIR) on image quality in cerebral CT angiography before and after intracranial aneurysm treatment.
    Hajdu SD, Daniel RT, Meuli RA, Zerlauth JB, Dunet V.
    Eur J Radiol; 2018 May; 102():109-114. PubMed ID: 29685523
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  • 20. New scanning technique using Adaptive Statistical Iterative Reconstruction (ASIR) significantly reduced the radiation dose of cardiac CT.
    Tumur O, Soon K, Brown F, Mykytowycz M.
    J Med Imaging Radiat Oncol; 2013 Jun; 57(3):292-6. PubMed ID: 23721137
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