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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleADULT BRAIN

Myelin Detection Using Rapid Quantitative MR Imaging Correlated to Macroscopically Registered Luxol Fast Blue–Stained Brain Specimens

J.B.M. Warntjes, A. Persson, J. Berge and W. Zech
American Journal of Neuroradiology June 2017, 38 (6) 1096-1102; DOI: https://doi.org/10.3174/ajnr.A5168
J.B.M. Warntjes
aFrom the Center for Medical Image Science and Visualization (J.B.M.W., A.P., W.Z.)
bDivision of Cardiovascular Medicine, Department of Medical and Health Sciences (J.B.M.W.), Linköping University, Linköping, Sweden
cSyntheticMR AB (J.B.M.W.), Linköping, Sweden
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A. Persson
aFrom the Center for Medical Image Science and Visualization (J.B.M.W., A.P., W.Z.)
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J. Berge
dInstitute of Forensic Medicine (J.B., W.Z.), Linköping, Sweden
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W. Zech
aFrom the Center for Medical Image Science and Visualization (J.B.M.W., A.P., W.Z.)
dInstitute of Forensic Medicine (J.B., W.Z.), Linköping, Sweden
eInstitute of Forensic Medicine (W.Z.), University of Bern, Bern, Switzerland.
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Abstract

BACKGROUND AND PURPOSE: Myelin detection is of great value in monitoring diseases such as multiple sclerosis and dementia. However, most MR imaging methods to measure myelin are challenging for routine clinical use. Recently, a novel method was published, in which the presence of myelin is inferred by using its effect on the intra- and extracellular water relaxation rates and proton density, observable by rapid quantitative MR imaging. The purpose of this work was to validate this method further on the brains of 12 fresh, intact cadavers.

MATERIALS AND METHODS: The 12 brains were scanned with a quantification sequence to determine the longitudinal and transverse relaxation rates and proton density as input for the myelin estimations. Subsequently, the brains were excised at postmortem examination, and brain slices were stained with Luxol fast blue to verify the presence of myelin. The optical density values of photographs of the stained brain slices were registered with the MR images and correlated with the myelin estimation performed by quantitative MR imaging.

RESULTS: A correlation was found between the 2 methods with a mean Spearman ρ for all subjects of 0.74 ± 0.11. Linear regression showed a mean intercept of 1.50% ± 2.84% and a mean slope of 4.37% ± 1.73%/%. A lower correlation was found for the separate longitudinal relaxation rates and proton density (ρ = 0.63 ± 0.12 and −0.73 ± 0.09, respectively). For transverse relaxation rates, the ρ was very low (0.11 ± 0.28).

CONCLUSIONS: The observed correlation supports the validity of myelin measurement by using the MR imaging quantification method.

ABBREVIATIONS:

LFB
Luxol fast blue
OD
optical density
PD
proton density
qMRI
quantitative MRI
R1
longitudinal relaxation rate
R2
transverse relaxation rate
  • © 2017 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 38 (6)
American Journal of Neuroradiology
Vol. 38, Issue 6
1 Jun 2017
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Cite this article
J.B.M. Warntjes, A. Persson, J. Berge, W. Zech
Myelin Detection Using Rapid Quantitative MR Imaging Correlated to Macroscopically Registered Luxol Fast Blue–Stained Brain Specimens
American Journal of Neuroradiology Jun 2017, 38 (6) 1096-1102; DOI: 10.3174/ajnr.A5168

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Myelin Detection Using Rapid Quantitative MR Imaging Correlated to Macroscopically Registered Luxol Fast Blue–Stained Brain Specimens
J.B.M. Warntjes, A. Persson, J. Berge, W. Zech
American Journal of Neuroradiology Jun 2017, 38 (6) 1096-1102; DOI: 10.3174/ajnr.A5168
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  • Effect of Gadolinium on the Estimation of Myelin and Brain Tissue Volumes Based on Quantitative Synthetic MRI
  • Analysis of White Matter Damage in Patients with Multiple Sclerosis via a Novel In Vivo MR Method for Measuring Myelin, Axons, and G-Ratio
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