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Updated: Mar 31, 2026

Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Orientation Dependent MR Signal Decay Differentiates between People with MS, Their Asymptomatic Siblings and
Enedino Hernández-Torres1, Vanessa Wiggermann2, Simon Hametner3
1UBC MRI Research Centre, University of British Columbia, Vancouver, Canada; Department of Pediatrics, University of British Columbia, Vancouver, Canada.
Abstract:
R2* relaxometry of the brain is a quantitative magnetic resonance technique which is influenced by iron and myelin content across different brain regions. Multiple sclerosis (MS) is a common inflammatory, demyelinating disease affecting both white and grey matter regions of the CNS. Using R2*, increased iron deposition has been described in deep gray matter of MS patients. Iron accumulation might promote oxidative stress in the brain, which can lead to cell death and neurodegeneration. However, recent histological work indicates that iron may be reduced within the normal appearing white matter (WM) in MS. In the present study we analyzed the R2* signal across the white matter in 39 patients with MS, 31 asymptomatic age matched siblings of patients and 30 age-matched controls. The measurement of R2* in white matter is affected by the signal's dependency on white matter fibre orientation with respect to the main magnetic field which can be accounted using diffusion tensor imaging. We observed a clear separation of the three study groups in R2*. The values in the MS group were significantly lower compared to the siblings and controls, while the siblings group presented with significantly higher R2* values than both unrelated healthy controls and patients. Furthermore, we found significantly decreased normal-appearing white matter R2* values in patients with more severe disease course. Angle resolved analysis of R2* improves the sensitivity for detecting subtle differences in WM R2* compared to standard histogram based analyses. Our findings suggest that the decreased R2* values in MS are due to diffuse tissue damage and decreased myelin in the normal appearing and diffusely abnormal WM. The increased R2* in unaffected siblings may identify a predisposition to increased iron and the potential for oxidative stress as a risk factor for developing MS.
Insights
Multiple sclerosis (MS) patients show lower R2* brain values due to tissue damage and myelin loss. Siblings of MS patients have higher R2* values, suggesting a potential iron predisposition and oxidative stress risk factor.
Area of Science:
- Neuroimaging
- Quantitative MRI
- Neurodegeneration
Background:
- Multiple Sclerosis (MS) is a CNS inflammatory demyelinating disease affecting white and grey matter.
- R2* relaxometry is sensitive to iron and myelin content, with prior studies showing increased iron in MS deep gray matter.
- Recent histology suggests reduced iron in MS normal-appearing white matter (WM).
Purpose of the Study:
- To analyze R2* signal in white matter of MS patients, their siblings, and controls.
- To investigate the relationship between R2* values, disease severity, and potential MS risk factors.
Main Methods:
- Quantitative R2* relaxometry was performed on 39 MS patients, 31 siblings, and 30 controls.
- Diffusion tensor imaging was used to account for white matter fiber orientation effects on R2* measurements.
- Angle-resolved analysis of R2* was employed to enhance sensitivity to subtle WM differences.
Main Results:
- Significant differences in R2* values were observed between the three groups.
- MS patients exhibited significantly lower R2* values compared to siblings and controls.
- Siblings showed significantly higher R2* values than both controls and MS patients, with decreased R2* correlating with MS severity.
Conclusions:
- Decreased R2* in MS patients suggests diffuse tissue damage and myelin loss in normal-appearing and abnormal white matter.
- Elevated R2* in siblings may indicate a predisposition to increased iron and oxidative stress, a potential risk factor for MS development.
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