Search Results - "Yelbuz, T M"

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    Pulmonary nodules: experimental and clinical studies at low-dose CT by Diederich, S, Lenzen, H, Windmann, R, Puskas, Z, Yelbuz, T M, Henneken, S, Klaiber, T, Eameri, M, Roos, N, Peters, P E

    Published in Radiology (01-10-1999)
    “…To compare the number of pulmonary nodules detected at helical low- and standard-dose computed tomography (CT) and to investigate the diagnostic value of…”
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    An elegant technique for ex vivo imaging in experimental research—Optical coherence tomography (OCT) by Tschernig, T., Thrane, L., Jørgensen, T.M., Thommes, J., Pabst, R., Yelbuz, T.M.

    Published in Annals of anatomy (01-01-2013)
    “…Optical coherence tomography (OCT) is an elegant technology for imaging of tissues and organs and has been established for clinical use for around a decade…”
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    Does the stage 16 embryo in Hamburger-Hamilton's "Series of normal stages in the development of the chick embryo" have a potential "conotruncal" heart defect? by Misske, J, Männer, J, Yelbuz, T M

    Published in Pediatric cardiology (01-08-2007)
    “…The classical Hamburger and Hamilton (HH) paper demonstrates the normal stages of development of the chick embryo that have been extensively used as the basis…”
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    Isolated noncompaction of the left ventricular myocardium -- a review of the literature two decades after the initial case description by Engberding, R, Yelbuz, T M, Breithardt, G

    Published in Clinical research in cardiology (01-07-2007)
    “…Isolated noncompaction of the left ventricular myocardium (INVM), first described in 1984, is an unclassified cardiomyopathy and is assumed to occur as an…”
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    Improved preparation of chick embryonic samples for magnetic resonance microscopy by Zhang, Xiaowei, Yelbuz, T. Mesud, Cofer, Gary P., Choma, Michael A., Kirby, Margaret L., Johnson, G. Allan

    Published in Magnetic resonance in medicine (01-06-2003)
    “…Previous work demonstrated the power of three‐dimensional (3D) magnetic resonance microscopy (MRM) to follow complicated morphologic development in the…”
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    Effect of increased wall thickness on indices of left ventricular pump function in children by Wessel, A, Schüller, W C, Yelbuz, T M, Bürsch, J H

    Published in British Heart Journal (01-08-1994)
    “…OBJECTIVE--To investigate whether augmented chamber performance in children with a concentric hypertrophied left ventricle is due to increased myocardial…”
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    Optical coherence tomography: A new high-resolution imaging technology to study cardiac development in chick embryos by YELBUZ, T. Mesud, CHOMA, Michael A, THRANE, Lars, KIRBY, Margaret L, IZATT, Joseph A

    Published in Circulation (New York, N.Y.) (26-11-2002)
    “…Optical coherence tomography (OCT) is a depth-resolved, noninvasive, non-destructive imaging modality, the use of which has yet to be fully realized in…”
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    Shortened outflow tract leads to altered cardiac looping after neural crest ablation by YELBUZ, T. Mesud, WALDO, Karen L, KUMISKI, Donna H, STADT, Harriett A, WOLFE, Raymond R, LEATHERBURY, Linda, KIRBY, Margaret L

    Published in Circulation (New York, N.Y.) (23-07-2002)
    “…Congenital conotruncal malformations frequently involve dextroposed aorta. The pathogenesis of dextroposed aorta is not known but is thought to be due to…”
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    In vivo visualisation of coronary artery development by high-resolution optical coherence tomography by Norozi, K, Thrane, L, Männer, J, Pedersen, F, Wolf, I, Mottl-Link, S, Meinzer, H-P, Wessel, A, Yelbuz, T M

    Published in BMJ case reports (2009)
    “…Panel E demonstrates a three-dimensional reconstruction of the aorta with the arising RCA of the OCT volume scan data of the same heart shown in panel D…”
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    Myocardial volume and organization are changed by failure of addition of secondary heart field myocardium to the cardiac outflow tract by Yelbuz, T. Mesud, Waldo, Karen L., Zhang, Xiaowei, Zdanowicz, Marzena, Parker, Jeremy, Creazzo, Tony L., Johnson, G. Allan, Kirby, Margaret L.

    Published in Developmental dynamics (01-10-2003)
    “…Cardiac neural crest ablation results in primary myocardial dysfunction and failure of the secondary heart field to add the definitive myocardium to the…”
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