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.

Plos One
|September 14, 2018
PubMed

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.

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