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Updated: Aug 29, 2026

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Simple and complex movement-associated functional MRI changes in patients at presentation with clinically isolated
Massimo Filippi1, Maria A Rocca, Domenico M Mezzapesa
1Neuroimaging Research Unit, Scientific Institute and University Ospedale San Raffaele, Milan, Italy. m.filippi@hsr.it
Abstract:
Using functional magnetic resonance imaging (fMRI), we investigated whether movement-associated functional changes of the brain are present in patients who are, most likely, at the earliest stage of multiple sclerosis (MS). Functional MRI exams were obtained from 16 patients at presentation with clinically isolated syndromes (CIS) suggestive of MS and 15 sex- and age-matched healthy volunteers during the performance of three simple and one more complex motor tasks with fully normal functioning extremities. fMRI analysis was performed using statistical parametric mapping (SPM99). Compared to healthy volunteers, CIS patients had increased activations of the contralateral primary sensorimotor cortex (SMC), secondary somatosensory cortex (SII), and inferior frontal gyrus (IFG), when performing a simple motor task with the dominant hand. The increased recruitment of the contralateral primary SMC was also found during the performance of the same motor task with the non-dominant hand and with the dominant foot. In this latter case, an anterior shift of the center of activation of this region was detected. During the performance of a complex motor task with the dominant upper and lower limbs, CIS patients had an increased recruitment of a widespread network (including the frontal lobe, the insula, the thalamus), usually considered to function in motor, sensory, and multimodal integration processing. The comparison of brain activations during the performance of simple vs. complex motor tasks showed that the movement-associated somatotopic organization of the cerebral and cerebellar cortices was retained in patients with CIS. Cortical reorganization occurs in patients at presentation with CIS highly suggestive of MS. Local synaptic reorganization, recruitment of parallel existing pathways, and reorganization of distant sites are all likely to contribute to the observed functional changes. Hum. Brain Mapping 21:106-115, 2004.
Insights
Early multiple sclerosis (MS) patients show altered brain activity during motor tasks. Functional magnetic resonance imaging (fMRI) reveals increased brain region recruitment in individuals with clinically isolated syndromes (CIS).
Area of Science:
- Neuroscience
- Neurology
- Radiology
Background:
- Multiple sclerosis (MS) is a chronic inflammatory disease of the central nervous system.
- Clinically isolated syndromes (CIS) represent the earliest clinical presentation suggestive of MS.
- Understanding early functional brain changes is crucial for diagnosis and management.
Purpose of the Study:
- To investigate movement-associated functional brain changes in patients with CIS using fMRI.
- To compare brain activation patterns between CIS patients and healthy volunteers during motor tasks.
- To identify early signs of cortical reorganization in the context of potential MS.
Main Methods:
- Functional magnetic resonance imaging (fMRI) was employed to assess brain activity.
- 16 CIS patients and 15 healthy controls performed simple and complex motor tasks.
- Statistical parametric mapping (SPM99) was used for fMRI data analysis.
Main Results:
- CIS patients exhibited increased activation in sensorimotor cortex, secondary somatosensory cortex, and inferior frontal gyrus during simple motor tasks.
- Increased contralateral primary sensorimotor cortex recruitment was observed across different limbs.
- Complex motor tasks in CIS patients led to widespread network recruitment, including frontal lobe, insula, and thalamus.
- Somatotopic organization of brain and cerebellar cortices was preserved in CIS patients.
Conclusions:
- Cortical reorganization occurs early in patients presenting with CIS suggestive of MS.
- Functional brain changes involve local synaptic reorganization, recruitment of parallel pathways, and distant site reorganization.
- These findings highlight the dynamic nature of brain adaptation in the early stages of MS.
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