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.

Abstract

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.