Vascular malformation mimicking multiple sclerosis active plaque: Usefulness of susceptibility weighted imaging (SWI)

Claudia Marsecano1, Marco Perri2, Giulia Michelini2

  • 1Department of Biotechnological and Applied Clinical Science, Division of Radiology, University of L'Aquila, Italy claudia.marsecano@gmail.com.

Insights

Susceptibility weighted imaging (SWI) aids in diagnosing brain disorders by detecting cerebral microbleeds, which appear as focal hyperdensities on CT scans. SWI MRI provides crucial details for differentiating lesions, improving diagnostic accuracy.

Area of Science:

  • Neuroradiology
  • Neuroimaging

Background:

  • Focal hyperdensities on computed tomography (CT) scans of the brain often require further investigation with magnetic resonance imaging (MRI).
  • These hyperdensities can represent cerebral microbleeds, which are calcified perivascular clusters of haemosiderin, potentially indicating underlying brain disorders.

Observation:

  • Cerebral microbleeds possess paramagnetic and ferromagnetic properties, causing magnetic field inhomogeneity detectable by specialized MRI sequences.
  • Susceptibility weighted imaging (SWI) at 3 Tesla (3T) with phase post-processing is highly effective in evaluating these magnetic field variations.

Findings:

  • CT findings of focal hyperdense areas can mimic various brain pathologies, leading to potential misinterpretations.
  • SWI MRI offers enhanced sensitivity for detecting and characterizing lesions, proving valuable in the differential diagnosis of neurological conditions.

Implications:

  • SWI plays a critical role in differentiating between active plaques, vascular malformations, and hemorrhagic lesions.
  • This case report highlights the utility of SWI in managing patients with suspected or confirmed neurological disorders, such as multiple sclerosis, presenting with ambiguous CT findings.