PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 18, 2026NeuroImage Clinical0 citationsOpen Access

Delayed transcallosal conduction to the lesioned sensorimotor cortex in multiple Sclerosis: A combined TMS 7 T-MRI study

View Full Paper
MMMads A.J. MadsenLCLasse ChristiansenVWVanessa Wiggermann

Key Points

  • This research aims to assess how cortical lesions in the sensorimotor cortex contribute to delayed transcallosal motor interaction in multiple sclerosis.
  • Used 7 T MRI and transcranial magnetic stimulation to study 38 MS patients and 20 healthy controls.
  • Identified cortical lesions and measured transcallosal conduction time from the non-lesion to lesion-bearing hemisphere.
  • Computed motor-evoked potentials and the ipsilateral silent period (iSP) during muscle contractions.
  • 41 of 76 MS hemispheres had lesions in the sensorimotor cortex.
  • Transcallosal conduction time was significantly prolonged in MS patients compared to healthy controls (P < 0.001).
  • Delay occurred specifically from non-lesion to lesion-bearing hemispheres (P = 0.026), linked with intracortical lesion type (P < 0.001).

Abstract

• Ipsilateral silent period reveals delayed transcallosal motor interaction in multiple sclerosis. • Cortical lesions in sensorimotor cortex delay the onset of transcallosal motor inhibition. • Delayed transcallosal inhibition is only present toward the lesioned cortex. • Intracortical lesions, not callosal microstructure, is linked to this direction‑specific delay. In multiple sclerosis (MS), demyelination and degeneration of transcallosal pathways impair interhemispheric communication. While white matter damage is well documented, the impact of cortical lesions on transcallosal conduction remains unclear. To determine whether cortical lesions in the sensorimotor hand area (SM1‑HAND) contribute to impaired transcallosal motor interaction using ultra‑high‑field MRI and transcranial magnetic stimulation (TMS). Twenty healthy controls (HCs) and 38 MS patients underwent 7 T structural and diffusion‑weighted MRI. Structural scans were used to identify cortical lesions in SM1‑HAND, while diffusion tensor imaging (DTI) quantified microstructural properties in the transcallosal tract connecting left and right SM1‑HAND. Single‑pulse TMS was delivered to each SM1‑HAND during tonic first dorsal interosseous contraction to measure the ipsilateral silent period (iSP). Corticospinal conduction was measured with contralateral motor‑evoked potentials (MEPs), while the iSP was used to compute transcallosal conduction time (TCT). Among MS patients, 41 of 76 hemispheres contained an SM1‑HAND lesion. TCT was significantly prolonged in MS relative to HCs (P 0.05). The presence of cortical lesions in the sensorimotor cortex affects transcallosal inhibition between homologous sensorimotor regions in MS, slowing the build-up of inhibitory influence on the corticospinal output in the lesioned cortex. This delayed inhibitory build‑up appears to be associated with an intracortical lesion type.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Madsen et al. (2026) studied this question.

synapsesocial.com/papers/6a0aac2b5ba8ef6d83b6fb7fhttps://doi.org/10.1016/j.nicl.2026.104006
Ask AI
Helpful
Bookmark
Share
View Full Paper