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Hemispheric asymmetries of cortico-cortical connections in human hand motor areas

  • C. Civardi
  • , A. Cavalli
  • , P. Naldi
  • , C. Varrasi
  • , R. Cantello

Research output: Contribution to journalArticlepeer-review

Abstract

Objective: To evaluate possible functional asymmetries of the motor cortex on the hand-dominant versus the non-dominant hemisphere. Methods: We assessed the handedness of 15 consenting volunteers using the Edinburgh Inventory. They were divided in two groups: 9 right-handers and 6 left- handers. We used single- and paired-transcranial magnetic stimulation (TMS) to measure the relaxed and active motor threshold and the ipsilateral cortico-cortical inhibition and facilitation curve for both hand motor areas. We looked for hemispheric asymmetries of variables related to the side of stimulation (dominant versus non-dominant) and to handedness. Results: We found no significant intra- or intergroup hemispheric asymmetry for the relaxed and active thresholds. Among the right-handers, the cortico-cortical inhibition and facilitation curve showed an increased amount of facilitation in the dominant as compared with the non-dominant hand area. No such changes were seen among the left-handers. Both the dominant and the non-dominant hand areas of the right-handers showed more inhibition and less facilitation on the cortico-cortical inhibition and facilitation curve than the corresponding areas of left-handers. Conclusion: In the right-handers, paired TMS studies showed a functional asymmetry of the motor cortex between the dominant and the non-dominant hand. The left-handers did not show this lateralization. Under TMS investigation their motor cortex function appeared different from that of right-handers. (C) 2000 Elsevier Science Ireland Ltd.

Original languageEnglish
Pages (from-to)624-629
Number of pages6
JournalClinical Neurophysiology
Volume111
Issue number4
DOIs
Publication statusPublished - 1 Apr 2000

Keywords

  • Cortico-cortical inhibition and facilitation
  • Handedness
  • Motor dominance
  • Transcranial magnetic stimulation

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