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Updated: Nov 14, 2025

Magnetic Resonance Imaging of Multiple Sclerosis at 7.0 Tesla
Published on: February 19, 2021
Myelin and axon pathology in multiple sclerosis assessed by myelin water and multi-shell diffusion imaging
Reza Rahmanzadeh1,2, Po-Jui Lu1,2, Muhamed Barakovic1,2
1Department of Medicine and Biomedical Engineering, Translational Imaging in Neurology Basel, University Hospital Basel and University of Basel, Basel, Switzerland.
Abstract:
Damage to the myelin sheath and the neuroaxonal unit is a cardinal feature of multiple sclerosis; however, a detailed characterization of the interaction between myelin and axon damage in vivo remains challenging. We applied myelin water and multi-shell diffusion imaging to quantify the relative damage to myelin and axons (i) among different lesion types; (ii) in normal-appearing tissue; and (iii) across multiple sclerosis clinical subtypes and healthy controls. We also assessed the relation of focal myelin/axon damage with disability and serum neurofilament light chain as a global biological measure of neuroaxonal damage. Ninety-one multiple sclerosis patients (62 relapsing-remitting, 29 progressive) and 72 healthy controls were enrolled in the study. Differences in myelin water fraction and neurite density index were substantial when lesions were compared to healthy control subjects and normal-appearing multiple sclerosis tissue: both white matter and cortical lesions exhibited a decreased myelin water fraction and neurite density index compared with healthy (P < 0.0001) and peri-plaque white matter (P < 0.0001). Periventricular lesions showed decreased myelin water fraction and neurite density index compared with lesions in the juxtacortical region (P < 0.0001 and P < 0.05). Similarly, lesions with paramagnetic rims showed decreased myelin water fraction and neurite density index relative to lesions without a rim (P < 0.0001). Also, in 75% of white matter lesions, the reduction in neurite density index was higher than the reduction in the myelin water fraction. Besides, normal-appearing white and grey matter revealed diffuse reduction of myelin water fraction and neurite density index in multiple sclerosis compared to healthy controls (P < 0.01). Further, a more extensive reduction in myelin water fraction and neurite density index in normal-appearing cortex was observed in progressive versus relapsing-remitting participants. Neurite density index in white matter lesions correlated with disability in patients with clinical deficits (P < 0.01, beta = -10.00); and neurite density index and myelin water fraction in white matter lesions were associated to serum neurofilament light chain in the entire patient cohort (P < 0.01, beta = -3.60 and P < 0.01, beta = 0.13, respectively). These findings suggest that (i) myelin and axon pathology in multiple sclerosis is extensive in both lesions and normal-appearing tissue; (ii) particular types of lesions exhibit more damage to myelin and axons than others; (iii) progressive patients differ from relapsing-remitting patients because of more extensive axon/myelin damage in the cortex; and (iv) myelin and axon pathology in lesions is related to disability in patients with clinical deficits and global measures of neuroaxonal damage.
Insights
Multiple sclerosis involves extensive myelin and axon damage in both lesions and normal-appearing tissue. This damage correlates with patient disability and disease progression, highlighting the need for targeted therapies.
Area of Science:
- Neuroimaging
- Neuropathology
- Multiple Sclerosis Research
Background:
- Multiple sclerosis (MS) is characterized by myelin sheath and neuroaxonal damage, but in vivo characterization of their interaction is challenging.
- Understanding the interplay between myelin and axon pathology is crucial for assessing disease progression and disability in MS.
Purpose of the Study:
- To quantify the relative damage to myelin and axons in different MS lesion types and normal-appearing tissue using advanced neuroimaging techniques.
- To investigate the relationship between focal myelin/axon damage, clinical disability, and serum neurofilament light chain levels in MS patients.
Main Methods:
- Applied myelin water imaging and multi-shell diffusion imaging to 91 MS patients (relapsing-remitting and progressive) and 72 healthy controls.
- Quantified myelin water fraction and neurite density index in various lesion types, normal-appearing white and grey matter, and correlated findings with clinical disability and serum biomarkers.
Main Results:
- Both white matter and cortical lesions showed significantly decreased myelin water fraction and neurite density index compared to healthy controls and normal-appearing white matter.
- Periventricular and rim-positive lesions exhibited greater myelin and axon damage than juxtacortical and rim-negative lesions, respectively.
- Normal-appearing white and grey matter also displayed diffuse myelin and axon damage in MS patients, with greater cortical damage in progressive MS compared to relapsing-remitting MS.
Conclusions:
- Myelin and axon pathology in MS is widespread, affecting both lesions and normal-appearing tissues.
- Specific lesion characteristics (e.g., location, paramagnetic rim) are associated with differential levels of myelin and axon damage.
- Progressive MS is associated with more extensive cortical myelin and axon damage compared to relapsing-remitting MS.
- Myelin and axon damage within lesions correlates with clinical disability and systemic neuroaxonal damage markers.
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