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Research ArticleAdult Brain
Open Access

Iron-Insensitive Quantitative Assessment of Subcortical Gray Matter Demyelination in Multiple Sclerosis Using the Macromolecular Proton Fraction

V.L. Yarnykh, E.P. Krutenkova, G. Aitmagambetova, P. Repovic, A. Mayadev, P. Qian, L.K. Jung Henson, B. Gangadharan and J.D. Bowen
American Journal of Neuroradiology April 2018, 39 (4) 618-625; DOI: https://doi.org/10.3174/ajnr.A5542
V.L. Yarnykh
aFrom the Department of Radiology (V.L.Y.), University of Washington, Seattle, Washington
bResearch Institute of Biology and Biophysics (E.P.K., G.A., V.L.Y.), Tomsk State University, Tomsk, Russian Federation
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E.P. Krutenkova
bResearch Institute of Biology and Biophysics (E.P.K., G.A., V.L.Y.), Tomsk State University, Tomsk, Russian Federation
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G. Aitmagambetova
bResearch Institute of Biology and Biophysics (E.P.K., G.A., V.L.Y.), Tomsk State University, Tomsk, Russian Federation
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P. Repovic
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
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A. Mayadev
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
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P. Qian
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
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L.K. Jung Henson
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
dPiedmont Henry Hospital (L.K.J.H.), Stockbridge, Georgia.
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B. Gangadharan
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
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J.D. Bowen
cMultiple Sclerosis Center (P.R., A.M., P.Q., L.K.J.H., B.G., J.D.B.), Swedish Neuroscience Institute, Seattle, Washington
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Abstract

BACKGROUND AND PURPOSE: Fast macromolecular proton fraction mapping is a recent quantitative MR imaging method for myelin assessment. The objectives of this study were to evaluate the macromolecular proton fraction as a measure of demyelination in subcortical GM structures in multiple sclerosis and assess a potential relationship between demyelination and excess iron deposition using the macromolecular proton fraction and T2* mapping.

MATERIALS AND METHODS: Macromolecular proton fraction and T2* maps were obtained from 12 healthy controls, 18 patients with relapsing-remitting MS, and 12 patients with secondary-progressive MS using 3T MR imaging. Parameter values in the caudate nucleus, globus pallidus, putamen, substantia nigra, and thalamus were compared between groups and correlated to clinical data.

RESULTS: The macromolecular proton fraction in all subcortical structures and T2* in the globus pallidus, putamen, and caudate nucleus demonstrated a significant monotonic decrease from controls to patients with relapsing-remitting MS and from those with relapsing-remitting MS to patients with secondary-progressive MS. The macromolecular proton fraction in all subcortical structures significantly correlated with the Expanded Disability Status Scale and MS Functional Composite scores with absolute Pearson correlation coefficient (r) values in a range of 0.4–0.6. Significant correlations (r = −0.4 to −0.6) were also identified between the macromolecular proton fraction and the 9-Hole Peg Test, indicating a potential relationship with nigrostriatal pathway damage. Among T2* values, weak significant correlations with clinical variables were found only in the putamen. The macromolecular proton fraction did not correlate with T2* in any of the studied anatomic structures.

CONCLUSIONS: The macromolecular proton fraction provides an iron-insensitive measure of demyelination. Myelin loss in subcortical GM structures in MS is unrelated to excess iron deposition. Subcortical GM demyelination is more closely associated with the disease phenotype and disability than iron overload.

ABBREVIATIONS:

CN
caudate nucleus
EDSS
Expanded Disability Status Scale
GP
globus pallidus
MPF
macromolecular proton fraction
MT
magnetization transfer
NAWM
normal-appearing WM
PASAT3
Paced Auditory Serial Addition Test with 3-second interstimulus intervals
RRMS
relapsing-remitting multiple sclerosis
SN
substantia nigra
SPMS
secondary-progressive multiple sclerosis
  • © 2018 by American Journal of Neuroradiology

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American Journal of Neuroradiology: 39 (4)
American Journal of Neuroradiology
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1 Apr 2018
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V.L. Yarnykh, E.P. Krutenkova, G. Aitmagambetova, P. Repovic, A. Mayadev, P. Qian, L.K. Jung Henson, B. Gangadharan, J.D. Bowen
Iron-Insensitive Quantitative Assessment of Subcortical Gray Matter Demyelination in Multiple Sclerosis Using the Macromolecular Proton Fraction
American Journal of Neuroradiology Apr 2018, 39 (4) 618-625; DOI: 10.3174/ajnr.A5542

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Iron-Insensitive Quantitative Assessment of Subcortical Gray Matter Demyelination in Multiple Sclerosis Using the Macromolecular Proton Fraction
V.L. Yarnykh, E.P. Krutenkova, G. Aitmagambetova, P. Repovic, A. Mayadev, P. Qian, L.K. Jung Henson, B. Gangadharan, J.D. Bowen
American Journal of Neuroradiology Apr 2018, 39 (4) 618-625; DOI: 10.3174/ajnr.A5542
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