Interindividual differences in mid-adolescents in error monitoring and post-error adjustment.
A number of studies have concluded that cognitive control is not fully established until late adolescence. The precise differences in brain function between adults and adolescents with respect to cognitive control, however, remain unclear. To address this issue, we conducted a study in which 185 ado...
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doaj-91734f0a80104e93aac2be78cc09ada52020-11-25T02:22:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0192e8895710.1371/journal.pone.0088957Interindividual differences in mid-adolescents in error monitoring and post-error adjustment.Sarah RodehackeEva MennigenKathrin U MüllerStephan RipkeMark J JacobThomas HübnerDirk H K SchmidtThomas GoschkeMichael N SmolkaA number of studies have concluded that cognitive control is not fully established until late adolescence. The precise differences in brain function between adults and adolescents with respect to cognitive control, however, remain unclear. To address this issue, we conducted a study in which 185 adolescents (mean age (SD) 14.6 (0.3) years) and 28 adults (mean age (SD) 25.2 (6.3) years) performed a single task that included both a stimulus-response (S-R) interference component and a task-switching component. Behavioural responses (i.e. reaction time, RT; error rate, ER) and brain activity during correct, error and post-error trials, detected by functional magnetic resonance imaging (fMRI), were measured. Behaviourally, RT and ER were significantly higher in incongruent than in congruent trials and in switch than in repeat trials. The two groups did not differ in RT during correct trials, but adolescents had a significantly higher ER than adults. In line with similar RTs, brain responses during correct trials did not differ between groups, indicating that adolescents and adults engage the same cognitive control network to successfully overcome S-R interference or task switches. Interestingly, adolescents with stronger brain activation in the bilateral insulae during error trials and in fronto-parietal regions of the cognitive control network during post-error trials did have lower ERs. This indicates that those mid-adolescents who commit fewer errors are better at monitoring their performance, and after detecting errors are more capable of flexibly allocating further cognitive control resources. Although we did not detect a convincing neural correlate of the observed behavioural differences between adolescents and adults, the revealed interindividual differences in adolescents might at least in part be due to brain development.http://europepmc.org/articles/PMC3928333?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sarah Rodehacke Eva Mennigen Kathrin U Müller Stephan Ripke Mark J Jacob Thomas Hübner Dirk H K Schmidt Thomas Goschke Michael N Smolka |
spellingShingle |
Sarah Rodehacke Eva Mennigen Kathrin U Müller Stephan Ripke Mark J Jacob Thomas Hübner Dirk H K Schmidt Thomas Goschke Michael N Smolka Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. PLoS ONE |
author_facet |
Sarah Rodehacke Eva Mennigen Kathrin U Müller Stephan Ripke Mark J Jacob Thomas Hübner Dirk H K Schmidt Thomas Goschke Michael N Smolka |
author_sort |
Sarah Rodehacke |
title |
Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
title_short |
Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
title_full |
Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
title_fullStr |
Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
title_full_unstemmed |
Interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
title_sort |
interindividual differences in mid-adolescents in error monitoring and post-error adjustment. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2014-01-01 |
description |
A number of studies have concluded that cognitive control is not fully established until late adolescence. The precise differences in brain function between adults and adolescents with respect to cognitive control, however, remain unclear. To address this issue, we conducted a study in which 185 adolescents (mean age (SD) 14.6 (0.3) years) and 28 adults (mean age (SD) 25.2 (6.3) years) performed a single task that included both a stimulus-response (S-R) interference component and a task-switching component. Behavioural responses (i.e. reaction time, RT; error rate, ER) and brain activity during correct, error and post-error trials, detected by functional magnetic resonance imaging (fMRI), were measured. Behaviourally, RT and ER were significantly higher in incongruent than in congruent trials and in switch than in repeat trials. The two groups did not differ in RT during correct trials, but adolescents had a significantly higher ER than adults. In line with similar RTs, brain responses during correct trials did not differ between groups, indicating that adolescents and adults engage the same cognitive control network to successfully overcome S-R interference or task switches. Interestingly, adolescents with stronger brain activation in the bilateral insulae during error trials and in fronto-parietal regions of the cognitive control network during post-error trials did have lower ERs. This indicates that those mid-adolescents who commit fewer errors are better at monitoring their performance, and after detecting errors are more capable of flexibly allocating further cognitive control resources. Although we did not detect a convincing neural correlate of the observed behavioural differences between adolescents and adults, the revealed interindividual differences in adolescents might at least in part be due to brain development. |
url |
http://europepmc.org/articles/PMC3928333?pdf=render |
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