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  3. Inhibitory control of the human dorsolateral prefrontal cortex during the anti-saccade paradigm--a transcranial magnetic stimulation study

Inhibitory control of the human dorsolateral prefrontal cortex during the anti-saccade paradigm--a transcranial magnetic stimulation study

Details
Publisher DOI
10.1111/j.1460-9568.2007.05758.x
PubMed ID
17767514
Abstract
In the anti-saccade paradigm, subjects are instructed not to make a reflexive saccade to an appearing lateral target but to make an intentional saccade to the opposite side instead. The inhibition of reflexive saccade triggering is under the control of the dorsolateral prefrontal cortex (DLPFC). The critical time interval at which this inhibition takes place during the paradigm, however, is not exactly known. In the present study, we used single-pulse transcranial magnetic stimulation (TMS) to interfere with DLPFC function in 15 healthy subjects. TMS was applied over the right DLPFC either 100 ms before the onset of the visual target (i.e. -100 ms), at target onset (i.e. 0 ms) or 100 ms after target onset (i.e. +100 ms). Stimulation 100 ms before target onset significantly increased the percentage of anti-saccade errors to both sides, while stimulation at, or after, target onset had no significant effect. All three stimulation conditions had no significant influence on saccade latency of correct or erroneous anti-saccades. These findings show that the critical time interval at which the DLPFC controls the suppression of a reflexive saccade in the anti-saccade paradigm is before target onset. In addition, the results suggest the view that the triggering of correct anti-saccades is not under direct control of the DLPFC.
Date Issued
2007
Publication Type
Article
Language(s)
en
Author(s)
Nyffeler, Thomas  
Universitätsklinik für Neurologie  
Müri, René Martin  
Universitätsklinik für Neurologie  
Bucher-Ottiger, Y
Pierrot-Deseilligny, Charles
Gaymard, Bertrand
Rivaud-Pechoux, Sophie
Additional Credits
Universitätsklinik für Neurologie  
Journal
European journal of neuroscience
Publisher
Blackwell Science
ISSN
0953-816X
ISBN
17767514
Access(Rights)
metadata.only
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