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Updated: Mar 21, 2026

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Multi-parametric quantitative MRI of normal appearing white matter in multiple sclerosis, and the effect of disease
Sarah C Reitz1,2, Stephanie-Michelle Hof3,4, Vinzenz Fleischer5,6
1Department of Neurology, Goethe University, Frankfurt/Main, Germany. SarahChristina.Reitz@kgu.de.
Abstract:
White matter (WM) lesions with a distinct lesion-tissue contrast are the main radiological hallmark of multiple sclerosis (MS) in standard magnetic resonance imaging (MRI). Pathological WM changes beyond lesion development lack suitable contrasts, rendering the investigation of normal appearing WM (NAWM) more challenging. In this study, repeat quantitative MRI (qMRI) was collected in 9 relapsing remitting MS patients with mild disease over nine months. The relaxation times T1 and T2, the proton density (PD), and the magnetization transfer ratio (MTR) were analysed in the NAWM. For each parameter, both the mean value and the standard deviation were determined across large NAWM regions. The resulting 8-dimensional multi-parameter space includes parameter non-uniformities as additional descriptors of NAWM inhomogeneity. The goals of the study were to investigate (1) which of the eight parameters differ significantly between NAWM and normal WM, (2) if parameter time courses differ between patients with and without radiological disease activity, and (3) if a suitable biomarker can be derived from the multi-parameter space, allowing for NAWM characterization and differentiation from controls. On a group level, all parameters investigated except mean T1 values were significantly affected in MS NAWM. Group classification accuracy using a multi-parametric support vector machine approach in NAWM was 66.7 %. In addition, mean T2 values increased significantly with time for patients with radiological disease activity, but not for patients without radiological activity. In conclusion, our data demonstrate the potential of qMRI for investigating MS pathology in NAWM. T2 measurements in NAWM may enable monitoring of disease activity outside of overt lesions.
Insights
Quantitative MRI reveals significant changes in normal-appearing white matter (NAWM) in multiple sclerosis (MS) patients. T2 relaxation times in NAWM may help monitor disease activity beyond visible lesions.
Area of Science:
- Neuroimaging
- Radiology
- Neurology
Background:
- Multiple sclerosis (MS) diagnosis relies on white matter (WM) lesions visible on MRI.
- Investigating subtle WM changes in normal-appearing white matter (NAWM) is challenging due to lack of contrast.
- Quantitative MRI (qMRI) offers potential for characterizing NAWM pathology.
Purpose of the Study:
- To identify qMRI parameters that differ between MS NAWM and normal WM.
- To assess if parameter time courses correlate with radiological disease activity.
- To develop biomarkers for NAWM characterization and differentiation from controls.
Main Methods:
- Repeat qMRI (T1, T2, PD, MTR) over nine months in 9 relapsing-remitting MS patients.
- Analysis of mean values and standard deviations across large NAWM regions.
- Multi-parametric analysis using an 8-dimensional space and support vector machines.
Main Results:
- All investigated parameters except mean T1 differed significantly in MS NAWM compared to normal WM.
- Multi-parametric classification accuracy for NAWM was 66.7%.
- Mean T2 values increased significantly over time in patients with radiological disease activity.
Conclusions:
- qMRI is a promising tool for studying MS pathology in NAWM.
- T2 measurements in NAWM may serve as a biomarker for monitoring subclinical disease activity.
- Characterizing NAWM provides insights into MS progression beyond focal lesions.

