Related Experiment Video
Updated: Feb 5, 2026

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Longitudinal study of multiple sclerosis lesions using ultra-high field (7T) multiparametric MR imaging
Sanjeev Chawla1,2, Ilya Kister3, Tim Sinnecker4
1Center for Advanced Imaging Innovation and Research (CAI2R) and Bernard and Irene Schwartz Center for Biomedical Imaging, Departments of Radiology, New York, New York, United States of America.
Abstract:
Pathophysiology of multiple sclerosis (MS) lesions is dynamic and changes over time. The purpose of this exploratory study was to determine the longitudinal changes in MS lesions over time on ultra-high field MR imaging. Nine patients with MS underwent high-resolution 3D-susceptibility weighted imaging (SWI) and 2D-gradient-echo-T2*-weighted imaging on 7T MRI at baseline and after ~2.4 years of follow-up. Morphologic imaging characteristics, signal intensity patterns and quantitative susceptibility mapping (QSM) values of lesions were recorded at both time points. Lesions were classified as "iron-laden" if they demonstrated hypointense signal on T2*-weighted images and/or SWI as well as hyperintense signal on QSM. Lesions were considered "non-iron-laden" if they were hyperintense on T2*/SWI and isointense or hyperintense on QSM. Total of 162 non-iron-laden and 29 iron-laden lesions were observed at baseline. No change in baseline lesion size during follow up was recorded in 92.7%; no change in lesion-vessel relationship in 86.5%; and no change in signal intensity pattern in 96.9% of lesions. Three lesions which were non-iron-laden at baseline, exhibited iron at follow-up. In two iron-laden lesions, redistribution of iron content was observed at follow-up. Two-thirds of these iron-laden lesions showed an increase in QSM at follow-up relative to baseline, and the remaining one-third exhibited decrease in QSM. Most of the newly formed lesions (11/13, 84.6%) at follow-up were iron-laden. 7T multiparametric MRI is a useful tool for tracking the evolution of MS lesions, especially with regard to changes in iron content.
Insights
Ultra-high field MRI tracks multiple sclerosis (MS) lesion evolution, revealing changes in iron content over time. New MS lesions predominantly show iron accumulation, highlighting MRI
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Multiple sclerosis (MS) lesion pathophysiology is dynamic and evolves over time.
- Understanding longitudinal lesion changes is crucial for MS management.
- Ultra-high field MRI offers advanced capabilities for detailed lesion assessment.
Purpose of the Study:
- To investigate longitudinal changes in MS lesions using ultra-high field MRI.
- To assess morphologic characteristics, signal intensity, and iron content of MS lesions over time.
Main Methods:
- Nine MS patients underwent 7 Tesla (7T) MRI at baseline and ~2.4 years follow-up.
- High-resolution 3D-susceptibility weighted imaging (SWI) and 2D-gradient-echo-T2*-weighted imaging were utilized.
- Quantitative susceptibility mapping (QSM) quantified iron content; lesions classified as iron-laden or non-iron-laden.
Main Results:
- Most lesions (92.7%) showed no change in size; 86.5% maintained lesion-vessel relationship; 96.9% had stable signal intensity.
- Three non-iron-laden lesions became iron-laden; iron redistribution occurred in two iron-laden lesions.
- Newly formed lesions at follow-up were predominantly iron-laden (84.6%); QSM values showed varied iron content changes.
Conclusions:
- 7T multiparametric MRI effectively tracks MS lesion evolution, particularly changes in iron deposition.
- Iron accumulation is a key feature of newly forming MS lesions.
- Longitudinal ultra-high field MRI provides valuable insights into MS disease progression.
Related Concept Videos
Longitudinal Studies
Longitudinal Research
Bioavailability Study Design: Single Versus Multiple Dose Studies
Multiple Allele Traits
Imaging Studies VII: Vascular Imaging
Imaging Studies II: Ultrasonography

