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Accuracy and precision of quantitative assessment of cartilage morphology by magnetic resonance imaging at 3.0T
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Eckstein F. Charles HC, Buck RJ, Kraus VB, Remmers AE, Hudelmaier M. Wirth W. Evelhoch JL. Accuracy and precision of quantitative assessment of cartilage morphology by magnetic resonance imaging at 3.0T. Arthritis Rheum 2005;52:3132-3136.
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Impact of coil design on the contrast-to-noise ratio, precision, and consistency of quantitative cartilage morphometry at 3 Tesla: A pilot study for the osteoarthritis initiative
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Eckstein F. Kunz M. Hudelmaier M. Jackson R. Yu J. Eaton CB, Schneider E. Impact of coil design on the contrast-to-noise ratio, precision, and consistency of quantitative cartilage morphometry at 3 Tesla: a pilot study for the osteoarthritis initiative. Magn Reson Med 2007;57: 448-454.
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Precision of 3.0 tesla quantitative magnetic resonance imaging of cartilage morphology in a multicentre clinical trial
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Eckstein F. Buck RJ, Burstein D. Charles HC, Crim J. Hudelmaier M. Hunter D. Hutchins G. Jackson C. Byers K. V, Lane NE, Link TM, Majumdar S. Mazzuca S. Prasad PV, Schnitzer TJ, Taljanovic MS, Vaz A. Wyman B. Hellio Le Graverand MP. Precision of 3.0 tesla quantitative magnetic resonance imaging of cartilage morphology in a multicentre clinical trial. Ann Rheum Dis 2008;67:1683-1688.
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Glycosaminoglycan in articular cartilage: In vivo assessment with delayed Gd (DTPA) (2-)-enhanced MR imaging
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Nondestructive imaging of human cartilage glycosaminoglycan concentration by MRI
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Delayed gadolinium-enhanced MRI of cartilage (dGEMRIC) and T2 characteristics of human knee articular cartilage: Topographical variation and relationships to mechanical properties
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Kurkijarvi JE, Nissi MJ, Kiviranta I. Jurvelin JS, Nieminen MT. Delayed gadolinium-enhanced MRI of cartilage (dGEMRIC) and T2 characteristics of human knee articular cartilage: topographical variation and relationships to mechanical properties. Magn Reson Med 2004;52:41-46.
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Samosky JT, Burstein D. Eric GW, Howe R. Martin S. Gray ML. Spatially-localized correlation of dGEMRIC-measured GAG distribution and mechanical stiffness in the human tibial plateau. J Orthop Res 2005;23:93-101.
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Williams A. Sharma L. McKenzie CA, Prasad PV, Burstein D. Delayed gadolinium-enhanced magnetic resonance imaging of cartilage in knee osteoarthritis: findings at different radiographic stages of disease and relationship to malalignment. Arthritis Rheum 2005;52:3528-3535.
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Cartilage glycosaminoglycan loss in the acute phase after an anterior cruciate ligament injury: Delayed gadolinium-enhanced magnetic resonance imaging of cartilage and synovial fluid analysis
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Eckstein F. Buck RJ, Wyman BT, Kotyk JJ, Le Graverand MP, Remmers AE, Evelhoch JL, Hudelmaier M. Charles HC. Quantitative imaging of cartilage morphology at 3.0 Tesla in the presence of gadopentate dimeglumine (Gd-DTPA). Magn Reson Med 2007;58:402-406.
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Le Graverand MP, Vignon EP, Brandt KD, Mazzuca SA, Piperno M. Buck R. Charles HC, Hunter DJ, Jackson CG, Kraus VB, Link TM, Schnitzer TJ, Vaz A. Wyman B. Head-to-head comparison of the Lyon schuss and fixed flexion radiographic techniques. Long-term reproducibility in normal knees and sensitivity to change in osteoarthritic knees. Ann Rheum Dis 2008;67:1562-1566.
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A, technique for regional analysis of femorotibial cartilage thickness based on quantitative magnetic resonance imaging
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Wirth W. Eckstein F. A, technique for regional analysis of femorotibial cartilage thickness based on quantitative magnetic resonance imaging. IEEE Trans Med Imaging 2008;27:737-744.
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Twelve month longitudinal change in regional cartilage morphology in a multicenter, multivendor MRI study at 3.0 Tesla - the A9001140 study [abstract]
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Hellio Le Graverand MP, Wyman B. Buck RJ, Wirth W. Hudelmaier M. Eckstein F. Twelve month longitudinal change in regional cartilage morphology in a multicenter, multivendor MRI study at 3.0 Tesla - the A9001140 study [abstract]. Osteoarthritis Cartilage 2007;15 (Suppl C): C172.
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