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Fixation suppression of optokinetic nystagmus modulates cortical visual-vestibular interaction

  • Sandra Bense
  • , Thomas Stephan
  • , Peter Bartenstein
  • , Markus Schwaiger
  • , Thomas Brandt
  • , Marianne Dieterich
  • Johannes Gutenberg University
  • Ludwig-Maximilians-Universität München

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Water activation positron emission tomography and statistical group analysis were used to evaluate differences in activation-deactivation patterns during small-field visual motion stimulation, eliciting rightward optokinetic nystagmus and its fixation suppression in 12 healthy volunteers. Bilateral patterns of activation in the visual cortex, including the motion-sensitive area MT/V5, and deactivations in an assembly of vestibular areas (posterior insula, thalamus, anterior cingulate gyrus) during optokinetic nystagmus was markedly diminished or totally absent during its fixation suppression. This finding agrees with the concept of a reciprocal inhibitory interaction between the visual-optokinetic and the vestibular systems, which takes place at a lower level during fixation suppression, because the potential mismatch between the two sensory inputs, visual and vestibular, is then reduced.

Original languageEnglish
Pages (from-to)887-890
Number of pages4
JournalNeuroReport
Volume16
Issue number9
DOIs
StatePublished - 21 Jun 2005

Keywords

  • Fixation suppression
  • Humans
  • Interaction
  • Ocular motor
  • Optokinetic nystagmus
  • Positron emission tomography

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