Literature DB >> 12126500

The timing of action-monitoring processes in the anterior cingulate cortex.

Vincent Van Veen1, Cameron S Carter.   

Abstract

The anterior cingulate cortex (ACC) has been shown to respond to conflict between simultaneously active, incompatible response tendencies. This area is active during high-conflict correct trials and also when participants make errors. Here, we use the temporal resolution of high-density event-related potentials (ERPs) in combination with source localization to investigate the timing of ACC activity during conflict and error detection. We predicted that the same area of the ACC is active prior to high-conflict correct responses and following erroneous responses. Dipole modeling supported this prediction: The frontocentral N2, occurring prior to the response on correct conflict trials, and the ERN, occurring immediately following error responses, could both be modeled as having a generator in the caudal ACC, suggesting the same process to underlie both peaks. Modeling further suggested that the rostral area of the ACC was also active following errors, but later in time, contributing to the error positivity (P(E)), and peaking at 200-250 msec following the ERN peak. Despite the inherent limitations of source localization, these data may begin to shed light on the timing of action-monitoring processes. First, the time course of caudal ACC activity follows the time course as predicted by the conflict theory of this region. Second, caudal ACC activity might be temporally dissociated from rostral ACC activity during error trials, which possibly reflects a separate, affective component of the evaluative functions of the ACC.

Entities:  

Mesh:

Year:  2002        PMID: 12126500     DOI: 10.1162/08989290260045837

Source DB:  PubMed          Journal:  J Cogn Neurosci        ISSN: 0898-929X            Impact factor:   3.225


  346 in total

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2.  Response Conflict and Affective Responses in the Control and Expression of Race Bias.

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3.  Electrophysiological correlates of anterior cingulate function in a go/no-go task: effects of response conflict and trial type frequency.

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5.  The mental number line electrified: brain potentials in a numerical flanker task.

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6.  The bivalency effect in task switching: event-related potentials.

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7.  Effects of social context and predictive relevance on action outcome monitoring.

Authors:  Leonie Koban; Gilles Pourtois; Benoit Bediou; Patrik Vuilleumier
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8.  Event-related potentials elicited by errors during the stop-signal task. II: human effector-specific error responses.

Authors:  Robert M G Reinhart; Nancy B Carlisle; Min-Suk Kang; Geoffrey F Woodman
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Review 9.  Learning from experience: event-related potential correlates of reward processing, neural adaptation, and behavioral choice.

Authors:  Matthew M Walsh; John R Anderson
Journal:  Neurosci Biobehav Rev       Date:  2012-06-07       Impact factor: 8.989

10.  Drug-induced stimulation and suppression of action monitoring in healthy volunteers.

Authors:  Ellen R A de Bruijn; Wouter Hulstijn; Robbert J Verkes; Gé S F Ruigt; Bernard G C Sabbe
Journal:  Psychopharmacology (Berl)       Date:  2004-05-15       Impact factor: 4.530

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