| Literature DB >> 23664945 |
Ida Wessing1, Maimu A Rehbein2, Christian Postert3, Tilman Fürniss4, Markus Junghöfer5.
Abstract
Emotions can be regulated effectively via cognitive change, as evidenced by cognitive behavioural therapy. The neural correlates of cognitive change were investigated using reappraisal, a strategy that involves the reinterpretation of emotional stimuli. Hemodynamic studies revealed cortical structures involved in reappraisal and highlighted the role of the prefrontal cortex in regulating subcortical affective processing. Studies using event-related potentials elucidated the timing of reappraisal by showing effective modulation of the Late Positive Potential (LPP) after 300ms but also even earlier effects. The present study investigated the spatiotemporal dynamics of the cortical network underlying cognitive change via inverse source modelling based on whole-head magnetoencephalography (MEG). During MEG recording, 28 healthy participants saw angry and neutral faces and followed instructions designed to down- or up-regulate emotions via reappraisal. Differences between angry and neutral face processing were specifically enhanced during up-regulation, first in the parietal cortex during M170 and across the whole cortex during LPP-M, with particular involvement of the parietal and dorsal prefrontal cortex regions. Thus, our data suggest that the reappraisal of emotional faces involves specific modulations in a frontoparietal attention network.Entities:
Keywords: Attention; Cognitive change; Emotion; Emotion regulation; Emotional faces; LPP; LPP-M; M170; MEG; Magnetoencephalography; N170; Reappraisal
Mesh:
Year: 2013 PMID: 23664945 DOI: 10.1016/j.neuroimage.2013.04.117
Source DB: PubMed Journal: Neuroimage ISSN: 1053-8119 Impact factor: 6.556