Cerebral Vasoreactivity as an Indirect MRI Marker of White Matter Tracts Alterations in Multiple Sclerosis

Jeremy Deverdun1, Arthur Coget2,3,4, Xavier Ayrignac5

  • 1Department of Neuroradiology, University Hospital Center, I2FH, Institut d'Imagerie Fonctionnelle Humaine, Gui de Chauliac Hospital, 80 Avenue Augustin Fliche, 34295 Cedex 5, Montpellier, France. jeremy.deverdun@neuf.fr.

Brain Topography
|January 23, 2021
PubMed

Insights

Multiple sclerosis (MS) patients exhibit disrupted cerebral vasoreactivity (CVR) linked to white matter changes, offering a new imaging marker. This study reveals CVR disruptions indirectly identify white matter alterations and relate to clinical MS symptoms.

Area of Science:

  • Neuroimaging
  • Neuroscience
  • Vascular Biology

Background:

  • Multiple sclerosis (MS) is characterized by diffuse cerebral hypoperfusion, potentially due to metabolic and vascular changes.
  • White matter fiber alterations in MS are hypothesized to disrupt cerebral vasoreactivity (CVR) via astrocyte metabolism changes, leading to hypoperfusion.

Purpose of the Study:

  • To evaluate CVR disruptions in MS patients.
  • To assess the relationship between CVR disruptions and white matter lesions.
  • To compare CVR disruption maps with standard imaging biomarkers in MS.

Main Methods:

  • MRI with a hypercapnic challenge and Diffusion Tensor Imaging (DTI) were performed on 35 MS patients and 22 controls.
  • Neuropsychological assessments were conducted.
  • General linear models were used to assess disrupted CVR areas, with results mapped and analyzed against clinical scores, DTI metrics, and white matter lesions.

Main Results:

  • MS patients displayed significantly disrupted CVR in supratentorial white matter, affecting pathways connecting the insula, precentral gyrus, and frontal gyri via the corpus callosum.
  • A negative association was found between verbal intellectual quotient and a pathway linking hippocampi to the prefrontal cortex.
  • Disrupted CVR maps were independent of DTI metrics and white matter lesion load.

Conclusions:

  • White matter alterations in MS can be indirectly identified through associated vessel changes, offering a novel imaging marker.
  • Disrupted CVR is related to clinical manifestations of MS.
  • Astrocytes may play a mediating role in the relationship between white matter fibers and vascular changes in MS.