TY - JOUR
T1 - Interactions between emotion and action in the brain
AU - Lima Portugal, Liana Catarina
AU - Alves, Rita de Cássia Soares
AU - Junior, Orlando Fernandes
AU - Sanchez, Tiago Arruda
AU - Mocaiber, Izabela
AU - Volchan, Eliane
AU - Smith Erthal, Fátima
AU - David, Isabel Antunes
AU - Kim, Jongwan
AU - Oliveira, Leticia
AU - Padmala, Srikanth
AU - Chen, Gang
AU - Pessoa, Luiz
AU - Pereira, Mirtes Garcia
N1 - Publisher Copyright:
© 2020 The Authors
PY - 2020/7/1
Y1 - 2020/7/1
N2 - A growing literature supports the existence of interactions between emotion and action in the brain, and the central participation of the anterior midcingulate cortex (aMCC) in this regard. In the present functional magnetic resonance imaging study, we sought to investigate the role of self-relevance during such interactions by varying the context in which threating pictures were presented (with guns pointed towards or away from the observer). Participants performed a simple visual detection task following exposure to such stimuli. Except for voxelwise tests, we adopted a Bayesian analysis framework which evaluated evidence for the hypotheses of interest, given the data, in a continuous fashion. Behaviorally, our results demonstrated a valence by context interaction such that there was a tendency of speeding up responses to targets after viewing threat pictures directed towards the participant. In the brain, interaction patterns that paralleled those observed behaviorally were observed most notably in the middle temporal gyrus, supplementary motor area, precentral gyrus, and anterior insula. In these regions, activity was overall greater during threat conditions relative to neutral ones, and this effect was enhanced in the directed towards context. A valence by context interaction was observed in the aMCC too, where we also observed a correlation (across participants) of evoked responses and reaction time data. Taken together, our study revealed the context-sensitive engagement of motor-related areas during emotional perception, thus supporting the idea that emotion and action interact in important ways in the brain.
AB - A growing literature supports the existence of interactions between emotion and action in the brain, and the central participation of the anterior midcingulate cortex (aMCC) in this regard. In the present functional magnetic resonance imaging study, we sought to investigate the role of self-relevance during such interactions by varying the context in which threating pictures were presented (with guns pointed towards or away from the observer). Participants performed a simple visual detection task following exposure to such stimuli. Except for voxelwise tests, we adopted a Bayesian analysis framework which evaluated evidence for the hypotheses of interest, given the data, in a continuous fashion. Behaviorally, our results demonstrated a valence by context interaction such that there was a tendency of speeding up responses to targets after viewing threat pictures directed towards the participant. In the brain, interaction patterns that paralleled those observed behaviorally were observed most notably in the middle temporal gyrus, supplementary motor area, precentral gyrus, and anterior insula. In these regions, activity was overall greater during threat conditions relative to neutral ones, and this effect was enhanced in the directed towards context. A valence by context interaction was observed in the aMCC too, where we also observed a correlation (across participants) of evoked responses and reaction time data. Taken together, our study revealed the context-sensitive engagement of motor-related areas during emotional perception, thus supporting the idea that emotion and action interact in important ways in the brain.
KW - Action
KW - Anterior midcingulate cortex
KW - Emotion
KW - fMRI
KW - Self-relevance
UR - https://www.scopus.com/pages/publications/85082382368
U2 - 10.1016/j.neuroimage.2020.116728
DO - 10.1016/j.neuroimage.2020.116728
M3 - Journal article
C2 - 32199954
AN - SCOPUS:85082382368
SN - 1053-8119
VL - 214
JO - NeuroImage
JF - NeuroImage
M1 - 116728
ER -