Motor tract lesion mapping from the brain to the lower spinal cord in people with relapsing-remitting multiple sclerosis: exploring the association between lesion severity and functional consequences by limb.
Overview
- Service de Radiologie et Imagerie Médicale, Univ Rennes, CHU Rennes, Rennes F-35000, France
- Empenn Research Unit U1228, Univ Rennes, Inria, CNRS, Inserm, IRISA UMR 6074, Rennes F-35000, France
- Service de Neurologie, Univ Rennes, CHU Rennes, Rennes F-35000, France
- Assistance Publique-Hopitaux de Marseille (AP-HM), Hôpital Universitaire Timone, CEMEREM, F-13385 Marseille, France
- CRMBM, Aix-Marseille University, CNRS,F-13385 Marseille, France
- Department of Neurology, Assistance Publique-Hopitaux de Marseille (AP-HM), Hôpital Universitaire Timone, F-13385 Marseille, France
- Service des Explorations Fonctionnelles, Univ Rennes, CHU Rennes, Rennes F-35000, France
Abstract
Motor deficits in people with multiple sclerosis (pwMS) are often asymmetrical, suggesting an important role of focal lesions affecting the corresponding motor pathways. However, only a modest relationship has been established between lesion load and physical disability. One hypothesis could be that only heavily demyelinated lesions along the corticospinal tract (CST) would be associated with functional consequences. To test this hypothesis, we reconstructed the whole CST from the cortex to the bottom of the spinal cord and linked its structural damage with its functional consequences as measured clinically [with the American Spinal Injury Association motor (mASIA) score] and electrophysiologically [with the central motor conduction time (CMCT)] by limb. We prospectively included 60 relapsing–remitting pwMS and 33 healthy controls. The CSTs were reconstructed using probabilistic atlases. Lesion volume fraction and myelin content [approximated through the magnetization transfer ratio (MTR) and quantitative T1 (qT1)] were calculated by side on the different portions of the CST. Voxelwise MTR z-score maps were also produced to detect lesions severely demyelinated (z-score < −1.96 SD) along the whole CST. Forty-six pwMS and 28 healthy controls were included in the analyses. In the upper limb, CMCT was associated with both cervical lesion load (P < 0.001) and cervical MTR (P = 0.02) in the CST. In the lower limb, CMCT was associated with cervical lesion load and brain and thoracic MTR (all P < 0.001) in the CST. The Expanded Disability Status Scale score was associated with brainstem lesion load and thoracic MTR (all P < 0.01) in the CST. No association was found with the mASIA score per limb. Twenty-six per cent of the lesions were classified as severe, mainly in the cervical CST. In patients with at least one severe lesion, extra-lesional MTR along the CST was lower than in those without severe lesions (P < 0.001). The presence of a severe lesion in the spinal cord CST was the only explanatory variable associated with an increased risk of having an abnormal lower limb CMCT (odds ratio [95% confidence interval]: 1.74 [1.36–2.24], P < 0.001). The main results were replicated with qT1. In this study, we describe varying levels of microstructural damage in lesions along the CST, with associations observed between lesion severity and both extra-lesional damage and CMCT. These findings highlight the critical role of severe lesions along the CST—particularly at the cervical level—beyond overall lesion load, and underscore the need to develop therapies that promote remyelination and to evaluate their effects at the cervical spinal cord level.
Reproduced under the paper's license (CC BY), from the paper cited above.
Code
No file of the authors' code could be read here: it is described below, and read at its source.
gitlab.inria.fr/amasson/longiseg4ms
Availability: 1 check, the latest on 27 September 2026: the link is dead
- 27 September 2026: the link is dead
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Data supporting the findings of this study are available from the corresponding author, upon reasonable request, on osf.io.
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Version 1, 29 September 2026: the first record
Recorded: type, language, journal, volume, issue, pages, dates, 16 authors, 5 keywords, 5 funders, 58 references, 1 RRID.
Cite
This paper
Gaubert, M., Dufey, A., Bannier, E., Combès, B., Rico, A., Ferré, J.-C., Chouteau, R., Sauleau, P., Hamon, G., Liffran, M., Michel, L., Le Page, E., Callot, V., Audoin, B., Demortière, S., & Kerbrat, A. (2026). Motor tract lesion mapping from the brain to the lower spinal cord in people with relapsing-remitting multiple sclerosis: exploring the association between lesion severity and functional consequences by limb. Brain communications, 8(3), fcag140. https://
BibTeX
@article{gaubert2026moto
author = {Gaubert, Malo and Dufey, Alice and Bannier, Elise and Combès, Benoît and Rico, Audrey and Ferré, Jean-Christophe and Chouteau, Raphaël and Sauleau, Paul and Hamon, Guillaume and Liffran, Mathilde and Michel, Laure and Le Page, Emmanuelle and Callot, Virginie and Audoin, Bertrand and Demortière, Sarah and Kerbrat, Anne},
title = {{Motor tract lesion mapping from the brain to the lower spinal cord in people with relapsing-remitting multiple sclerosis: exploring the association between lesion severity and functional consequences by limb}},
journal = {Brain communications},
year = {2026},
month = apr,
volume = {8},
number = {3},
pages = {fcag140},
publisher = {Oxford University Press},
issn = {2632-1297},
doi = {10.1093/
url = {https://
pmid = {42164954},
pmcid = {PMC13184689}
}
RIS
TY - JOUR
AU - Gaubert, Malo
AU - Dufey, Alice
AU - Bannier, Elise
AU - Combès, Benoît
AU - Rico, Audrey
AU - Ferré, Jean-Christophe
AU - Chouteau, Raphaël
AU - Sauleau, Paul
AU - Hamon, Guillaume
AU - Liffran, Mathilde
AU - Michel, Laure
AU - Le Page, Emmanuelle
AU - Callot, Virginie
AU - Audoin, Bertrand
AU - Demortière, Sarah
AU - Kerbrat, Anne
TI - Motor tract lesion mapping from the brain to the lower spinal cord in people with relapsing-remitting multiple sclerosis: exploring the association between lesion severity and functional consequences by limb
T2 - Brain communications
J2 - Brain Commun
PY - 2026
DA - 2026/
VL - 8
IS - 3
SP - fcag140
SN - 2632-1297
PB - Oxford University Press
DO - 10.1093/
UR - https://
LA - en
ER -
CSL-JSON
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