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The Journal of Neuroscience, October 25, 2006, 26(43):11239-11247; doi:10.1523/JNEUROSCI.2165-06.2006
Previous Article
Behavioral/Systems/Cognitive
Brain Regions Mediating Flexible Rule Use during Development
Eveline A. Crone,1,3
Sarah E. Donohue,1
Ryan Honomichl,1
Carter Wendelken,1 and
Silvia A. Bunge1,2
1Center for Mind and Brain and 2Department of Psychology, University of California, Davis, California 95616, and 3Department of Psychology, Leiden University, 2333AK, Leiden, The Netherlands
Correspondence should be addressed to Eveline A. Crone, Department of Developmental Psychology, Leiden University, Wassenaarseweg 52, 2333AK, Leiden, The Netherlands. Email: ecrone{at}fsw.leidenuniv.nl
During development, children improve at retrieving and using rules to guide their behavior and at flexibly switching between these rules. In this study, we used functional magnetic resonance imaging to examine the changes in brain function associated with developmental changes in flexible rule use. Three age groups (812, 1317, and 1825 years) performed a task in which they were cued to respond to target stimuli on the basis of simple task rules. Bivalent target stimuli were associated with different responses, depending on the rule, whereas univalent target stimuli were associated with fixed responses. The comparison of bivalent and univalent trials enabled the identification of regions modulated by demands on rule representation. The comparison of rule-switch and rule-repetition trials enabled the identification of regions involved in rule switching. We have used this task previously in adults and have shown that ventrolateral prefrontal cortex (VLPFC) and the (pre)-supplementary motor area (pre-SMA/SMA) have dissociable roles in task-switching, such that VLPFC is associated most closely with rule representation, and pre-SMA/SMA is associated with suppression of the previous task set (Crone et al., 2006a). Based on behavioral data in children (Crone et al., 2004), we had predicted that regions associated with task-set suppression would show mature patterns of activation earlier in development than regions associated with rule representation. Indeed, we found an adult-like pattern of activation in pre-SMA/SMA by adolescence, whereas the pattern of VLPFC activation differed among children, adolescents, and adults. These findings suggest that two components of task-switchingrule retrieval and task-set suppressionfollow distinct neurodevelopmental trajectories.
Key words: rules; task-switching; cognitive control; prefrontal cortex; children; development
Received May 22, 2006;
revised Sept. 13, 2006;
accepted Sept. 15, 2006.
Correspondence should be addressed to Eveline A. Crone, Department of Developmental Psychology, Leiden University, Wassenaarseweg 52, 2333AK, Leiden, The Netherlands. Email: ecrone{at}fsw.leidenuniv.nl
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