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Using facial muscular movements to understand young children's emotion regulation and concurrent neural activation
Author(s) -
Grabell Adam S.,
Huppert Theodore J.,
Fishburn Frank A.,
Li Yanwei,
Jones Hannah M.,
Wilett Aimee E.,
Bemis Lisa M.,
Perlman Susan B.
Publication year - 2018
Publication title -
developmental science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.801
H-Index - 127
eISSN - 1467-7687
pISSN - 1363-755X
DOI - 10.1111/desc.12628
Subject(s) - psychology , facial expression , developmental psychology , set (abstract data type) , cognitive psychology , expressive suppression , neuroscience , cognition , cognitive reappraisal , communication , computer science , programming language
Individual differences in young children's frustration responses set the stage for myriad developmental outcomes and represent an area of intense empirical interest. Emotion regulation is hypothesized to comprise the interplay of complex behaviors, such as facial expressions, and activation of concurrent underlying neural systems. At present, however, the literature has mostly examined children's observed emotion regulation behaviors and assumed underlying brain activation through separate investigations, resulting in theoretical gaps in our understanding of how children regulate emotion in vivo . Our goal was to elucidate links between young children's emotion regulation‐related neural activation, facial muscular movements, and parent‐rated temperamental emotion regulation. Sixty‐five children (age 3–7) completed a frustration‐inducing computer task while lateral prefrontal cortex ( LPFC ) activation and concurrent facial expressions were recorded. Negative facial expressions with eye constriction were inversely associated with both parent‐rated temperamental emotion regulation and concurrent LPFC activation. Moreover, we found evidence that positive expressions with eye constriction during frustration may be associated with stronger LPFC activation. Results suggest a correspondence between facial expressions and LPFC activation that may explicate how children regulate emotion in real time.