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Published on: December 17, 2014
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.
Abstract:
Patients with multiple sclerosis (MS) show a diffuse cerebral perfusion decrease, presumably related to multiple metabolism and vascular alterations. It is assumed that white matter fiber alterations cause a localized cerebral vasoreactivity (CVR) disruption through astrocytes metabolism alteration, leading to hypoperfusion. We proposed to (1) evaluate the CVR disruptions in MS, (2) in relation to white matter lesions and (3) compare CVR disruptions maps with standard imaging biomarkers. Thirty-five MS patients (10 progressive, 25 relapsing-remitting) and 22 controls underwent MRI with hypercapnic challenge, DTI imaging and neuropsychological assessment. Areas with disrupted CVR were assessed using a general linear model. Resulting maps were associated with clinical scores, compared between groups, and related to DTI metrics and white matter lesions. MS patients showed stronger disrupted CVR within supratentorial white matter, linking the left anterior insula to both the precentral gyrus and the right middle and superior frontal gyrus through the corpus callosum (P < 0.05, FWE corrected). Patient's verbal intellectual quotient was negatively associated with a pathway linking both hippocampi to the ispilateral prefrontal cortex (P < 0.05, FWE corrected). Disrupted CVR maps unrelated to DTI metrics and white matter lesions. We have demonstrated for the first time that white matter alterations can be indirectly identified through surrounding vessel alterations, and are related to clinical signs of MS. This offers a new, likely independent marker to monitor MS and supports a mediator role of the astrocytes in the fibers/vessels relationship.
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.

