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Quantitative Assessment of Iron Accumulation in the Deep Gray Matter of Multiple Sclerosis by Magnetic Field Correlation Imaging

Y. Ge, J.H. Jensen, H. Lu, J.A. Helpern, L. Miles, M. Inglese, J.S. Babb, J. Herbert and R.I. Grossman
American Journal of Neuroradiology October 2007, 28 (9) 1639-1644; DOI: https://doi.org/10.3174/ajnr.A0646
Y. Ge
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J.H. Jensen
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H. Lu
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J.A. Helpern
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L. Miles
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M. Inglese
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J. Herbert
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Article Information

vol. 28 no. 9 1639-1644
DOI 
https://doi.org/10.3174/ajnr.A0646
PubMed 
17893225

Published By 
American Journal of Neuroradiology
Print ISSN 
0195-6108
Online ISSN 
1936-959X
History 
  • Received December 18, 2006
  • Accepted after revision March 1, 2007
  • Published online October 8, 2007.

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  • Latest version (September 24, 2007 - 10:48).
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Author Information

  1. Y. Gea,
  2. J.H. Jensena,
  3. H. Lua,
  4. J.A. Helperna,
  5. L. Milesa,
  6. M. Inglesea,
  7. J.S. Babba,
  8. J. Herbertb and
  9. R.I. Grossmana
  1. aCenter for Biomedical Imaging, Department of Radiology, New York University Medical Center, New York, NY
  2. bDepartment of Neurology, MS Care Center, Hospital for Joint Diseases, New York University School of Medicine, New York, NY
  1. Please address correspondence to Yulin Ge, MD, Department of Radiology/Center for Biomedical Imaging, New York University School of Medicine, 650 First Ave, 6th Floor, Room 615, New York, NY 10016; e-mail: yulin.ge{at}med.nyu.edu
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American Journal of Neuroradiology: 28 (9)
American Journal of Neuroradiology
Vol. 28, Issue 9
October 2007
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Y. Ge, J.H. Jensen, H. Lu, J.A. Helpern, L. Miles, M. Inglese, J.S. Babb, J. Herbert, R.I. Grossman
Quantitative Assessment of Iron Accumulation in the Deep Gray Matter of Multiple Sclerosis by Magnetic Field Correlation Imaging
American Journal of Neuroradiology Oct 2007, 28 (9) 1639-1644; DOI: 10.3174/ajnr.A0646

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Quantitative Assessment of Iron Accumulation in the Deep Gray Matter of Multiple Sclerosis by Magnetic Field Correlation Imaging
Y. Ge, J.H. Jensen, H. Lu, J.A. Helpern, L. Miles, M. Inglese, J.S. Babb, J. Herbert, R.I. Grossman
American Journal of Neuroradiology Oct 2007, 28 (9) 1639-1644; DOI: 10.3174/ajnr.A0646
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  • Aberrant iron deposition in the multiple sclerosis spinal cord relates to neurodegeneration
  • Iron-Insensitive Quantitative Assessment of Subcortical Gray Matter Demyelination in Multiple Sclerosis Using the Macromolecular Proton Fraction
  • Quantitative Susceptibility Mapping of the Thalamus: Relationships with Thalamic Volume, Total Gray Matter Volume, and T2 Lesion Burden
  • Thalamic Iron Differentiates Primary-Progressive and Relapsing-Remitting Multiple Sclerosis
  • Cognitive Implications of Deep Gray Matter Iron in Multiple Sclerosis
  • The Prognostic Utility of MRI in Clinically Isolated Syndrome: A Literature Review
  • Iron and Volume in the Deep Gray Matter: Association with Cognitive Impairment in Multiple Sclerosis
  • Toward a Better Understanding of Brain Lesions during Metachromatic Leukodystrophy Evolution
  • Iron Deposition on SWI-Filtered Phase in the Subcortical Deep Gray Matter of Patients with Clinically Isolated Syndrome May Precede Structure-Specific Atrophy
  • Reduced R2' in multiple sclerosis normal appearing white matter and lesions may reflect decreased myelin and iron content
  • Association of multiple sclerosis with restless legs syndrome and other sleep disorders in women
  • Multimodal Quantitative Magnetic Resonance Imaging of Thalamic Development and Aging across the Human Lifespan: Implications to Neurodegeneration in Multiple Sclerosis
  • Determinants of brain iron in multiple sclerosis: A quantitative 3T MRI study
  • Multiple Sclerosis and Chronic Cerebrospinal Venous Insufficiency: The Neuroimaging Perspective
  • Atrophy mainly affects the limbic system and the deep grey matter at the first stage of multiple sclerosis
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