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Research ArticleHEAD AND NECK

Fast Three-Point Dixon MR Imaging of the Retrobulbar Space with Low-Resolution Images for Phase Correction: Comparison with Fast Spin-Echo Inversion Recovery Imaging

Frank J. Rybicki, Robert V. Mulkern, Richard L. Robertson, Caroline D. Robson, Taylor Chung and Jingfei Ma
American Journal of Neuroradiology October 2001, 22 (9) 1798-1802;
Frank J. Rybicki
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Robert V. Mulkern
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Richard L. Robertson
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Caroline D. Robson
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Taylor Chung
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Jingfei Ma
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References

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    Glover GH. Multipoint Dixon technique for water and fat proton and susceptibility imaging. J Magn Reson Imaging 1991;1:521-530
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    Glover GH, Schneider E. Three point Dixon technique for true water/fat decomposition with Bo field inhomogeneity correction. Magn Reson Med 1991;18:371-383
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  5. Tamler B, Sommer FG, Glover GH, Schneider E. Prostate MR imaging performed with the three-point Dixon technique. Radiology 1991;179:43-47
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  6. Daniel BL, Butts K, Glover GH, Cooper C, Herfkens RJ. Breast cancer: gadolinium-enhanced MR imaging with a 0.5T open imager and three-point Dixon technique. Radiology 1998;207:183-190
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  7. Carson BW, Xiang QS. Fat suppression using direct phase encoding: musculoskeletal applications using MR imaging. AJR Am J Roentgenol 1999;173:230-233
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  8. Sargent MA, Poskitt KJ, Xiang QS, An L. Application of a three-point method for water-fat MR imaging in children. Pediatr Radiol 1999;29:444-448
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    Daniels DL, Kneeland JB, Shimakawa A, et al. MR imaging of the optic nerve and sheath: correcting the chemical shift misregistration effect. AJNR Am J Neuroradiol 1986;7:249-253
    Abstract/FREE Full Text
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  11. Lee DH, Simon JH, Szumowski J, et al. Optic neuritis and orbital lesions: lipid-suppressed and chemical shift MR imaging. Radiology 1991;179:543-546
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    Hardy PA, Hinks RS, Tkach JA. Separation of fat and water in fast spin-echo MR imaging with the three-point Dixon technique. J Magn Reson Imaging 1995;5:181-185
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    Ma J. Multipoint Dixon imaging with reduced time and increased reliability. Proceedings of the Sixth Meeting of the International Society for Magnetic Resonance in Medicine. Berkeley, Calif: International Society for Magnetic Resonance in Medicine; 1998:723
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    Xiang QS, An L. Water-fat imaging with direct phase encoding. Proceedings of the Society of Magnetic Resonance and the European Society of Magnetic Resonance in Medicine and Biology. Berkeley, Calif: Society of Magnetic Resonance in Medicine; 1995:650
  15. Xiang QS, An L. General 3-point water-fat imaging with optimized SNR. Proceedings of the Meeting of the International Society for Magnetic Resonance in Medicine. Berkeley, Calif: International Society for Magnetic Resonance in Medicine; 1996:1544
  16. Xiang QS, An L. Water-fat imaging with direct phase encoding. J Magn Reson Imaging 1997;7:1002-1015
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    Akkerman EM, Mass M. A region-growing algorithm to simultaneously remove dephasing influences and separate fat and water in two-point Dixon imaging. Proceedings of the Meeting of the International Society for Magnetic Resonance in Medicine. Berkeley, Calif: International Society for Magnetic Resonance in Medicine; 1995:649
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    Bernstein MA, Grgic M, Brosnan TJ, Pelc NJ. Reconstruction of phase contrast, phased array multicoil data. Magn Reson Med 1994;32:330-334
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American Journal of Neuroradiology: 22 (9)
American Journal of Neuroradiology
Vol. 22, Issue 9
1 Oct 2001
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Cite this article
Frank J. Rybicki, Robert V. Mulkern, Richard L. Robertson, Caroline D. Robson, Taylor Chung, Jingfei Ma
Fast Three-Point Dixon MR Imaging of the Retrobulbar Space with Low-Resolution Images for Phase Correction: Comparison with Fast Spin-Echo Inversion Recovery Imaging
American Journal of Neuroradiology Oct 2001, 22 (9) 1798-1802;

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Fast Three-Point Dixon MR Imaging of the Retrobulbar Space with Low-Resolution Images for Phase Correction: Comparison with Fast Spin-Echo Inversion Recovery Imaging
Frank J. Rybicki, Robert V. Mulkern, Richard L. Robertson, Caroline D. Robson, Taylor Chung, Jingfei Ma
American Journal of Neuroradiology Oct 2001, 22 (9) 1798-1802;
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Cited By...

  • Optimal Fat Suppression in Head and Neck MRI: Comparison of Multipoint Dixon with 2 Different Fat-Suppression Techniques, Spectral Presaturation and Inversion Recovery, and STIR
  • Improving Fat-Suppressed T2-Weighted Imaging of the Head and Neck with 2 Fast Spin-Echo Dixon Techniques: Initial Experiences
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