Slowly expanding lesions relate to persisting black-holes and clinical outcomes in relapse-onset multiple sclerosis

Alberto Calvi1, Carmen Tur2, Declan Chard1

  • 1Queen Square MS Centre, Department of Neuroinflammation, Institute of Neurology, Faculty of Brain Sciences, University College London (UCL), United Kingdom.

Abstract

Insights

Slowly expanding lesions (SELs) in multiple sclerosis (MS) correlate with more severe pathology and disability progression. Higher SEL volumes indicate worsening MS, while lower volumes suggest stability in relapse-onset MS patients.

Area of Science:

  • Neurology
  • Radiology
  • Neuroimmunology

Background:

  • Slowly expanding lesions (SELs) are MRI markers of chronic active lesions in multiple sclerosis (MS).
  • T1-hypointense black holes and reduced magnetization transfer ratio (MTR) indicate myelin and axonal loss, associated with progressive MS.
  • The relationship between these lesion metrics and clinical outcomes in relapse-onset MS requires further investigation.

Purpose of the Study:

  • To explore the relationship between SELs, T1-hypointense black holes, and longitudinal MRI metrics (T1 intensity, MTR) in relapse-onset MS.
  • To assess the correlation of these MRI markers with brain volume.
  • To determine the contribution of SELs to MS-related disability in relapse-onset patients.

Main Methods:

  • 135 patients with relapsing-remitting MS (RRMS) underwent clinical assessments and serial brain MRI (T2/FLAIR, T1-weighted, MTR).
  • SELs were identified using deformation field maps, and persisting black holes (PBHs) were quantified.
  • Statistical models assessed associations between SELs, PBHs, brain volume, MTR, and clinical outcomes like EDSS and confirmed disability progression (CDP).

Main Results:

  • 27% of T2 lesions were classified as SELs, and 10% as PBHs.
  • SELs showed higher PBH percentages and correlated positively with PBH volumes.
  • Increased SEL volumes over time predicted EDSS worsening and a higher risk of CDP in relapse-onset MS.

Conclusions:

  • SELs are linked to more destructive pathology, evidenced by PBH association and reduced T1 intensity/MTR over time.
  • Higher SEL volumes correlate with clinical progression in relapse-onset MS.
  • Lower SEL volumes are associated with clinical stability in relapse-onset MS.

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