Variation in orbitofrontal cortex volume: relation to sex, emotion regulation and affect
Author(s) -
B. Locke Welborn,
Xenophon Papademetris,
Deidre L. Reis,
Nallakkandi Rajeevan,
Suzanne M. Bloise,
Jeremy R. Gray
Publication year - 2009
Publication title -
social cognitive and affective neuroscience
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.229
H-Index - 103
eISSN - 1749-5024
pISSN - 1749-5016
DOI - 10.1093/scan/nsp028
Subject(s) - psychology , orbitofrontal cortex , ventromedial prefrontal cortex , affect (linguistics) , prefrontal cortex , developmental psychology , fractional anisotropy , basal ganglia , white matter , audiology , neuroscience , cognition , central nervous system , magnetic resonance imaging , medicine , communication , radiology
Sex differences in brain structure have been examined extensively but are not completely understood, especially in relation to possible functional correlates. Our two aims in this study were to investigate sex differences in brain structure, and to investigate a possible relation between orbitofrontal cortex subregions and affective individual differences. We used tensor-based morphometry to estimate local brain volume from MPRAGE images in 117 healthy right-handed adults (58 female), age 18-40 years. We entered estimates of local brain volume as the dependent variable in a GLM, controlling for age, intelligence and whole-brain volume. Men had larger left planum temporale. Women had larger ventromedial prefrontal cortex (vmPFC), right lateral orbitofrontal (rlOFC), cerebellum, and bilateral basal ganglia and nearby white matter. vmPFC but not rlOFC volume covaried with self-reported emotion regulation strategies (reappraisal, suppression), expressivity of positive emotions (but not of negative), strength of emotional impulses, and cognitive but not somatic anxiety. vmPFC volume statistically mediated sex differences in emotion suppression. The results confirm prior reports of sex differences in orbitofrontal cortex structure, and are the first to show that normal variation in vmPFC volume is systematically related to emotion regulation and affective individual differences.
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