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PUBMED FOR HANDHELDS

Journal Abstract Search


370 related items for PubMed ID: 25824643

  • 1. Feasibility and evaluation of dual-source transmit 3D imaging of the orbits: Comparison to high-resolution conventional MRI at 3T.
    Seeger A, Schulze M, Schuettauf F, Klose U, Ernemann U, Hauser TK.
    Eur J Radiol; 2015 Jun; 84(6):1150-8. PubMed ID: 25824643
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  • 4. Super-Resolution Magnetic Resonance Imaging of the Knee Using 2-Dimensional Turbo Spin Echo Imaging.
    Van Dyck P, Smekens C, Vanhevel F, De Smet E, Roelant E, Sijbers J, Jeurissen B.
    Invest Radiol; 2020 Aug; 55(8):481-493. PubMed ID: 32404629
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  • 8. Instrument visualization using conventional and compressed sensing SEMAC for interventional MRI at 3T.
    Sonnow L, Gilson WD, Raithel E, Nittka M, Wacker F, Fritz J.
    J Magn Reson Imaging; 2018 May; 47(5):1306-1315. PubMed ID: 28940951
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  • 9. Liver MRI at 3 T using a respiratory-triggered time-efficient 3D T2-weighted technique: impact on artifacts and image quality.
    Rosenkrantz AB, Patel JM, Babb JS, Storey P, Hecht EM.
    AJR Am J Roentgenol; 2010 Mar; 194(3):634-41. PubMed ID: 20173139
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  • 10. Three-dimensional volumetric MRI with isotropic resolution: improved speed of acquisition, spatial resolution and assessment of lesion conspicuity in patients with recurrent soft tissue sarcoma.
    Ahlawat S, Morris C, Fayad LM.
    Skeletal Radiol; 2016 May; 45(5):645-52. PubMed ID: 26897528
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  • 11. SEMAC-VAT and MSVAT-SPACE sequence strategies for metal artifact reduction in 1.5T magnetic resonance imaging.
    Ai T, Padua A, Goerner F, Nittka M, Gugala Z, Jadhav S, Trelles M, Johnson RF, Lindsey RW, Li X, Runge VM.
    Invest Radiol; 2012 May; 47(5):267-76. PubMed ID: 22266987
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  • 14. Clinical utility of fat-suppressed 3-dimensional controlled aliasing in parallel imaging results in higher acceleration sampling perfection with application optimized contrast using different flip angle evolutions MRI of the knee in adults.
    Lee S, Lee GY, Kim S, Park YB, Lee HJ.
    Br J Radiol; 2020 Aug; 93(1112):20190725. PubMed ID: 32516546
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  • 15. Fast inner-volume imaging of the lumbar spine with a spatially focused excitation using a 3D-TSE sequence.
    Riffel P, Michaely HJ, Morelli JN, Paul D, Kannengiesser S, Schoenberg SO, Haneder S.
    Acad Radiol; 2015 Apr; 22(4):423-9. PubMed ID: 25435184
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  • 16. High-resolution 3D-GRE imaging of the abdomen using controlled aliasing acceleration technique - a feasibility study.
    AlObaidy M, Ramalho M, Busireddy KK, Liu B, Burke LM, Altun E, Dale BM, Semelka RC.
    Eur Radiol; 2015 Dec; 25(12):3596-605. PubMed ID: 25916391
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  • 17. MRI of the knee at 3T: first clinical results with an isotropic PDfs-weighted 3D-TSE-sequence.
    Notohamiprodjo M, Horng A, Pietschmann MF, Müller PE, Horger W, Park J, Crispin A, del Olmo JR, Weckbach S, Herrmann KA, Reiser MF, Glaser C.
    Invest Radiol; 2009 Sep; 44(9):585-97. PubMed ID: 19668001
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  • 18. Comprehensive Assessment of Ankle Syndesmosis Injury Using 3D Isotropic Turbo Spin-Echo Sequences: Diagnostic Performance Compared With That of Conventional and Oblique 3-T MRI.
    Kim M, Choi YS, Jeong MS, Park M, Chun TJ, Kim JS, Young KW.
    AJR Am J Roentgenol; 2017 Apr; 208(4):827-833. PubMed ID: 28177647
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  • 19. Dual-source radiofrequency transmission with patient-adaptive local radiofrequency shimming for 3.0-T cardiac MR imaging: initial experience.
    Mueller A, Kouwenhoven M, Naehle CP, Gieseke J, Strach K, Willinek WA, Schild HH, Thomas D.
    Radiology; 2012 Apr; 263(1):77-85. PubMed ID: 22371610
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  • 20. Three-dimensional magnetic resonance observation of cartilage repair tissue (MOCART) score assessed with an isotropic three-dimensional true fast imaging with steady-state precession sequence at 3.0 Tesla.
    Welsch GH, Zak L, Mamisch TC, Resinger C, Marlovits S, Trattnig S.
    Invest Radiol; 2009 Sep; 44(9):603-12. PubMed ID: 19692843
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