Advanced MRI unravels the nature of tissue alterations in early multiple sclerosis

Guillaume Bonnier1, Alexis Roche2, David Romascano3

  • 1Advanced Clinical Imaging Technology group, Siemens Healthcare IM BM PI Lausanne, Switzerland ; Neuro-immunology and Laboratoire de recherché en neuroimagérie, Neurology Division, Department of Clinical Neurosciences, Centre Hospitalier Universitaire Vaudois and University of Lausanne Lausanne, Switzerland ; LTS5, Ecole Polytechnique Fédérale de Lausanne Lausanne, Switzerland.

Abstract

Insights

Advanced MRI reveals subtle brain changes in early multiple sclerosis (MS) patients, improving the correlation between imaging and clinical symptoms. This technique offers better insights into brain damage than conventional MRI.

Area of Science:

  • Neuroimaging
  • Radiology
  • Neurology

Background:

  • Conventional MRI offers limited insight into brain damage in multiple sclerosis (MS), showing poor clinic-radiological correlation.
  • Early relapsing-remitting MS (RRMS) patients with minor deficits require advanced imaging for detailed microstructural analysis.
  • Investigating advanced MRI to predict functional outcomes in early RRMS is crucial.

Purpose of the Study:

  • To apply advanced MRI techniques to detect microstructural brain alterations in early RRMS patients.
  • To assess the predictive potential of advanced MRI for functional performances in early RRMS.
  • To enhance clinic-radiological correlation in early MS using novel MRI methods.

Main Methods:

  • 3T brain relaxometry (T1, T2, T2*) and magnetization transfer MRI were performed on 36 RRMS patients and 18 healthy controls (HC).
  • Multicontrast analysis evaluated microstructural changes in normal-appearing (NA) tissue and lesions.
  • Generalized linear models predicted clinical performance using MRI data, conventional measures, and covariates.

Main Results:

  • Increased quantitative T2 and T2* relaxometry in temporal NAWM indicated subtle microedema in RRMS patients.
  • Significant T1 and MTR variations in lesions suggested substantial tissue loss.
  • Combined advanced and conventional MRI data significantly predicted cognitive fatigue, attention, and disability.

Conclusions:

  • Advanced 3T MRI techniques effectively revealed the nature of brain tissue damage in early MS.
  • These advanced methods significantly improved clinic-radiological correlations compared to conventional MRI in patients with minor deficits.
  • Advanced MRI holds promise for better understanding and managing early MS.