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Updated: Jun 2, 2026

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
MRI correlates of cognitive impairment in childhood-onset multiple sclerosis
C Till1, R Ghassemi, B Aubert-Broche
1Department of Psychology, York University, Toronto, Ontario, Canada. ctill@yorku.ca
Objective:
Brain MRI measures were correlated with neuropsychological function in 35 pediatric-onset multiple sclerosis (MS) patients and 33 age- and sex-matched healthy controls.
Method:
Mean age of MS patients was 16.3 ± 2.3 years with average disease duration of 4.3 ± 3.1 years. Cortical gray matter, thalamic, and global brain volumes were calculated for all participants using a scaling factor computed using normalization of atrophy method to normalize total and regional brain volumes for head size. T1- and T2-weighted lesion volumes were calculated for MS patients.
Results:
Cognitive impairment (CI) was identified in 29% of the MS cohort. Cognitive deficits predominantly involved attention and processing speed, expressive language, and visuomotor integration. Relative to controls, the MS group showed significantly lower thalamic volume (p < .001), total brain volume (p < .008), and gray matter volume (p < .015). Corpus callosum area and thalamic volume differentiated patients identified as having CI from those without CI (p < .05). Regression models controlling for disease duration and age indicated that thalamic volume accounted for significant incremental variance in predicting global IQ, processing speed, and expressive vocabulary (ΔR2 ranging from .43 to .60) and was the most robust MRI predictor of cognition relative to other MRI metrics.
Conclusions:
The robust association between cognitive function and reduced size of thalamus and global brain volume in pediatric-onset MS patients implicate neurodegenerative processes early in the disease course, and suggest that plasticity of an immature central nervous system is not sufficient to protect patients from the deleterious consequences of MS on cognitive neural networks. (PsycINFO Database Record (c) 2011 APA, all rights reserved).
Insights
Pediatric multiple sclerosis (MS) patients show reduced brain and thalamic volumes, impacting cognitive function. Thalamic volume is a key MRI predictor of cognitive deficits in these young patients.
Area of Science:
- Neurology
- Neuroimaging
- Pediatric Neurology
Background:
- Pediatric-onset multiple sclerosis (MS) is a chronic autoimmune disease affecting the central nervous system.
- Cognitive impairment (CI) is a significant challenge in pediatric MS, impacting quality of life.
- Understanding the relationship between brain structure and cognitive function is crucial for early intervention.
Purpose of the Study:
- To correlate brain Magnetic Resonance Imaging (MRI) measures with neuropsychological function in pediatric-onset MS.
- To identify specific brain regions associated with cognitive deficits in this population.
Main Methods:
- Brain MRI volumes (cortical gray matter, thalamic, global brain) and lesion volumes were assessed in 35 pediatric MS patients and 33 healthy controls.
- Neuropsychological function was evaluated to identify cognitive impairment.
- Statistical analyses, including regression models, were used to determine associations between MRI measures and cognitive performance.
Main Results:
- 29% of pediatric MS patients exhibited cognitive impairment, primarily affecting attention, processing speed, and language.
- MS patients showed significantly reduced thalamic, total brain, and gray matter volumes compared to controls.
- Thalamic volume was the strongest MRI predictor of global IQ, processing speed, and expressive vocabulary.
Conclusions:
- Reduced thalamic and global brain volumes in pediatric MS patients suggest early neurodegenerative processes.
- The immature central nervous system's plasticity may not fully protect against MS-related cognitive decline.
- MRI measures, particularly thalamic volume, are vital for assessing cognitive status in pediatric MS.
Related Concept Videos
Multiple Sclerosis l: Introduction
Magnetic Resonance Imaging
Imaging Studies IV: Magnetic Resonance Imaging
Brain Imaging
These technologies include computerized axial tomography (CAT or CT scans), positron-emission tomography (PET scans), magnetic resonance imaging (MRI), functional magnetic resonance imaging (fMRI), and Transcranial Magnetic Stimulation (TMS).

