Related Experiment Video
Updated: Apr 6, 2026

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Ultra-High-Field MRI Visualization of Cortical Multiple Sclerosis Lesions with T2 and T2*: A Postmortem MRI and
L E Jonkman1, R Klaver2, L Fleysher3
1From the Department of Anatomy and Neurosciences (L.E.J., R.K., J.J.G.G.), VU University Medical Center, Amsterdam, the Netherlands le.jonkman@vumc.nl.
Background And Purpose:
At 7T MR imaging, T2*-weighted gradient echo has been shown to provide high-resolution anatomic images of gray matter lesions. However, few studies have verified T2*WI lesions histopathologically or compared them with more standard techniques at ultra-high-field strength. This study aimed to determine the sensitivity of T2WI and T2*WI sequences for detecting cortical GM lesions in MS.
Materials And Methods:
At 7T, 2D multiecho spin-echo T2WI and 3D gradient-echo T2*WI were acquired from 27 formalin-fixed coronal hemispheric brain sections of 15 patients and 4 healthy controls. Proteolipid-stained tissue sections (8 μm) were matched to the corresponding MR images, and lesions were manually scored on both MR imaging sequences (blinded to histopathology) and tissue sections (blinded to MR imaging). The sensitivity of MR imaging sequences for GM lesion types and white matter lesions was calculated. An unblinded retrospective scoring was also performed.
Results:
If all cortical GM lesions were taken into account, the T2WI sequence detected slightly more lesions than the T2*WI sequence: 28% and 16%, respectively (P = .054). This difference disappeared when only intracortical lesions were considered. When histopathologic information (type, location) was revealed to the reader, the sensitivity went up to 84% (T2WI) and 85% (T2*WI) (not significant). Furthermore, the false-positive rate was 8.6% for the T2WI and 10.5% for the T2*WI sequence.
Conclusions:
There is no strong advantage of the T2*WI sequence compared with a conventional T2WI sequence in the detection of cortical lesions at 7T. Retrospectively, a high percentage of lesions could be detected with both sequences. However, many lesions are still missed prospectively. This could possibly be minimized with better a priori observer training.
Insights
T2-weighted imaging (T2WI) and T2*-weighted imaging (T2*WI) at 7T MRI showed similar sensitivity for detecting cortical gray matter lesions in multiple sclerosis (MS). While retrospective analysis improved detection, prospective identification of MS lesions remains challenging.
Area of Science:
- Neuroimaging
- Radiology
- Pathology
Background:
- 7 Tesla (7T) magnetic resonance imaging (MRI) offers high-resolution imaging for gray matter (GM) lesions in multiple sclerosis (MS).
- Histopathological validation and comparison of T2-weighted imaging (T2WI) and T2*-weighted imaging (T2*WI) at ultra-high-field strength are limited.
Purpose of the Study:
- To determine the sensitivity of T2WI and T2*WI sequences for detecting cortical GM lesions in MS at 7T.
- To compare the diagnostic performance of T2WI and T2*WI for MS-related brain lesions.
Main Methods:
- Acquisition of 2D multiecho spin-echo T2WI and 3D gradient-echo T2*WI at 7T from formalin-fixed brain sections.
- Manual scoring of lesions on MR images and corresponding 8 μm proteolipid-stained tissue sections by blinded observers.
- Calculation of sensitivity for GM and white matter lesions, including an unblinded retrospective scoring analysis.
Main Results:
- T2WI detected slightly more cortical GM lesions than T2*WI (28% vs. 16%), a difference not significant when only intracortical lesions were considered.
- Retrospective analysis with histopathological information significantly increased detection sensitivity to 84% for T2WI and 85% for T2*WI.
- False-positive rates were 8.6% for T2WI and 10.5% for T2*WI.
Conclusions:
- T2*WI offers no significant advantage over conventional T2WI for detecting cortical lesions at 7T in MS.
- Both sequences achieved high detection rates retrospectively, but prospective lesion identification remains suboptimal.
- Improved a priori observer training may enhance prospective detection of MS lesions.
Related Concept Videos
Magnetic Resonance Imaging
Imaging Studies IV: Magnetic Resonance Imaging

