Publication

Stroke Lesion Volume and Injury to Motor Cortex Output Determines Extent of Contralesional Motor Cortex Reorganization

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Last modified
  • 09/24/2025
Type of Material
Authors
    Cathrin Buetefisch, Emory UniversityMW Haut, West Virginia UniversityKP Revill, Emory UniversityS Shaeffer, Emory UniversityL Edwards, Emory UniversityDA Barany, Emory UniversitySamir Belagaje, Emory UniversityFadi Nahab, Emory UniversityN Shenvi, Emory UniversityKirk Easley, Emory University
Language
  • English
Date
  • 2023-02-14
Publisher
  • SAGE PUBLICATIONS INC
Publication Version
Copyright Statement
  • © The Author(s) 2023.
Final Published Version (URL)
Title of Journal or Parent Work
Volume
  • 37
Issue
  • 2-3
Start Page
  • 119
End Page
  • 130
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Abstract
  • Background: After stroke, increases in contralesional primary motor cortex (M1CL) activity and excitability have been reported. In pre-clinical studies, M1CL reorganization is related to the extent of ipsilesional M1 (M1IL) injury, but this has yet to be tested clinically. Objectives: We tested the hypothesis that the extent of damage to the ipsilesional M1 and/or its corticospinal tract (CST) determines the magnitude of M1CL reorganization and its relationship to affected hand function in humans recovering from stroke. Methods: Thirty-five participants with a single subacute ischemic stroke affecting M1 or CST and hand paresis underwent MRI scans of the brain to measure lesion volume and CST lesion load. Transcranial magnetic stimulation (TMS) of M1IL was used to determine the presence of an electromyographic response (motor evoked potential (MEP+ and MEP−)). M1CL reorganization was determined by TMS applied to M1CL at increasing intensities. Hand function was quantified with the Jebsen Taylor Hand Function Test. Results: The extent of M1CL reorganization was related to greater lesion volume in the MEP− group, but not in the MEP+ group. Greater M1CL reorganization was associated with more impaired hand function in MEP− but not MEP+ participants. Absence of an MEP (MEP−), larger lesion volumes and higher lesion loads in CST, particularly in CST fibers originating in M1 were associated with greater impairment of hand function. Conclusions: In the subacute post-stroke period, stroke volume and M1IL output determine the extent of M1CL reorganization and its relationship to affected hand function, consistent with pre-clinical evidence. ClinicalTrials.gov Identifier: NCT02544503.
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