Related Experiment Video
Updated: Aug 21, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Investigating the association between grey matter hypoperfusion and atrophy in multiple sclerosis using arterial spin
Ilaria Boscolo Galazzo1, Marco Castellaro2,3, Francesca Benedetta Pizzini1
1Department of Engineering for Innovation Medicine, University of Verona, 37134 Verona, Italy.
Abstract:
The study of grey matter (GM) perfusion abnormalities in multiple sclerosis (MS) is gaining increasing interest, thanks to the recent developments in MRI techniques such as arterial spin labelling (ASL). Previous studies in small mixed cohorts have demonstrated reduced perfusion in different GM regions in patients with MS compared with controls, especially in the frontal/parietal lobes and deep GM. In this multi-centre study, we aimed to investigate the relationship between ASL-perfusion patterns and GM atrophy in a large cohort of MS patients. We hypothesized that GM hypoperfusion is a phenomenon not wholly associated with the presence of structural atrophy. Therefore, we have evaluated whether GM perfusion changes are directly explained by underlying atrophy or occur in the absence of detectable GM tissue loss. Moreover, the relationship between clinical (physical and cognitive) measures and global GM perfusion level was assessed. Conventional structural and pseudo-continuous ASL data were acquired using 3T MRI scanners and a standardized protocol in four European MS centres. We included in the analysis 170 subjects [96 relapsing-remitting MS (RRMS), 41 primary-progressive MS (PPMS) and 33 healthy controls (HC)] that exhibited acceptable data quality and compatible acquisition schemes/ASL maps. Global and regional cerebral blood flow (CBF) patterns were explored to identify group differences, statistically controlling for 'morphometric covariates' (i.e. total brain volume, cortical thickness or subcortical volume) along with age, sex, disease duration and total T2-lesion load in the analysis of covariance ('basic covariates'). Similarly, partial correlation analyses were performed to assess the association of global CBF with physical (Expanded Disability Status Scale) and cognitive (Symbol Digit Modalities Test) scores. Global GM CBF values were lower in RRMS (64.1 ± 20.9 mL/100 g/min) and PPMS (52.9 ± 16.1 mL/100 g/min) compared with HC (78.5 ± 21.1 mL/100 g/min), with significant differences for both MS types compared with controls using both sets of covariates (pBonf≤0.05). Moreover, regional perfusion reduction encompassing several cortical and subcortical GM regions were found in patients versus controls, even after the inclusion of the morphometric covariates, while there were no differences in GM perfusion levels between MS phenotypes. In all patients considered together, no significant associations between global GM CBF and physical disability/cognitive tests scores were found when controlling for the confounding factors. These findings suggest that GM hypoperfusion is at least partially dissociated with atrophy. In this scenario, ASL-based perfusion may be a promising functional paraclinical tool to quantify GM neurovascular impairment in MS, aiding the understanding of the pathological mechanisms.
Insights
Grey matter (GM) hypoperfusion in multiple sclerosis (MS) is not entirely explained by atrophy. Arterial spin labelling (ASL) reveals reduced GM blood flow in MS patients, suggesting a potential tool for assessing neurovascular impairment.
Area of Science:
- Neuroimaging
- Neurology
- Radiology
Background:
- Grey matter (GM) perfusion abnormalities are increasingly studied in multiple sclerosis (MS) using advanced MRI techniques like arterial spin labelling (ASL).
- Previous research indicated reduced GM perfusion in MS patients compared to controls, particularly in frontal/parietal lobes and deep GM.
Purpose of the Study:
- To investigate the relationship between ASL-perfusion patterns and GM atrophy in a large cohort of MS patients.
- To determine if GM hypoperfusion is directly caused by structural atrophy or occurs independently.
- To assess the correlation between clinical measures (physical and cognitive) and global GM perfusion.
Main Methods:
- A multi-centre study involving 170 subjects (96 relapsing-remitting MS, 41 primary-progressive MS, 33 healthy controls).
- Acquisition of conventional structural and pseudo-continuous ASL data using 3T MRI scanners with a standardized protocol.
- Analysis included group comparisons of global and regional cerebral blood flow (CBF), controlling for morphometric and basic covariates, and partial correlation for clinical scores.
Main Results:
- Global GM CBF was significantly lower in both RRMS and PPMS patients compared to healthy controls (p<0.05).
- Regional perfusion reductions were observed in MS patients across cortical and subcortical GM regions, even after accounting for atrophy.
- No significant differences in GM perfusion were found between MS phenotypes, nor significant associations between global GM CBF and physical or cognitive scores.
Conclusions:
- GM hypoperfusion in MS is at least partially dissociated from structural atrophy.
- ASL-based perfusion imaging shows promise as a functional tool for quantifying neurovascular impairment in MS.
- This approach may enhance understanding of the underlying pathological mechanisms in MS.

