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Updated: Aug 11, 2026

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
Water content and myelin water fraction in multiple sclerosis. A T2 relaxation study
C Laule1, I M Vavasour, G R W Moore
1Dept of Physics & Astronomy, Magnetic Resonance Imaging, University of British Columbia Hospital, 2211 Wesbrook Mall, Vancouver, BC, V6T 2B5 Canada. claule@physics.ubc.ca
Background:
Measurements of the T2 decay curve provide estimates of total water content and myelin water fraction in white matter in-vivo, which may help in understanding the pathological progression of multiple sclerosis (MS).
Methods:
Thirty-three MS patients (24 relapsing remitting, 8 secondary progressive, 1 primary progressive) and 18 controls underwent MR examinations. T2 relaxation data were acquired using a 32-echo measurement. All controls and 18 of the 33 MS patients were scanned in the transverse plane through the genu and splenium of the corpus callosum. Five white matter and 6 grey matter structures were outlined in each of these subjects. The remaining 15 MS patients were scanned in other transverse planes. A total of 189 lesions were outlined in the MS patients. Water content and myelin water fraction were calculated for all regions of interest and all lesions.
Results:
The normal appearing white matter (NAWM) water content was, on average, 2.2% greater than that from controls, with significant differences occurring in the posterior internal capsules, genu and splenium of the corpus callosum, minor forceps and major forceps (p<0.0006). On average, MS lesions had 6.3% higher water content than contralateral NAWM (p<0.0001). Myelin water fraction was 16% lower in NAWM than for controls, with significant differences in the major and minor forceps, internal capsules, and splenium (p<0.05). The myelin water fraction of MS lesions averaged 52 % that of NAWM.
Conclusions:
NAWM in MS has a higher water content and lower myelin water fraction than control white matter. The cause of the myelin water fraction decrease in NAWM could potentially be due to either diffuse edema, inflammation, demyelination or any combination of these features. We present a simple model which suggests that myelin loss is the dominant feature of NAWM pathology.
Insights
Multiple sclerosis (MS) white matter shows increased water content and decreased myelin water fraction in normal-appearing white matter (NAWM) and lesions. Myelin loss appears to be the primary driver of NAWM pathology in MS.
Area of Science:
- Neuroimaging
- Biomedical Engineering
- Radiology
Background:
- Magnetic Resonance Imaging (MRI) T2 decay curve measurements offer insights into white matter (WM) water content and myelin water fraction (MWF).
- These metrics are crucial for understanding the progression of neurological diseases like multiple sclerosis (MS).
Purpose of the Study:
- To quantify water content and MWF in normal-appearing white matter (NAWM) and MS lesions.
- To investigate the pathological changes in white matter associated with multiple sclerosis.
Main Methods:
- Utilized a 32-echo T2 relaxation measurement on 33 MS patients and 18 controls.
- Calculated water content and MWF in defined white matter, grey matter, and MS lesion regions of interest.
- Scanned subjects in transverse planes through key white matter structures like the corpus callosum.
Main Results:
- NAWM in MS patients exhibited a 2.2% higher average water content compared to controls (p<0.0006).
- MS lesions showed significantly higher water content (6.3% greater than contralateral NAWM, p<0.0001).
- NAWM demonstrated a 16% lower MWF than controls (p<0.05), with MS lesions having only 52% of the NAWM MWF.
Conclusions:
- Normal-appearing white matter in MS is characterized by elevated water content and reduced myelin water fraction.
- The observed decrease in MWF in NAWM may indicate edema, inflammation, demyelination, or a combination.
- Myelin loss is suggested as the predominant pathological feature in NAWM associated with multiple sclerosis.
Related Concept Videos
Magnetic Resonance Imaging
Multiple Sclerosis l: Introduction

