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Neural Correlates of Socioeconomic Status in the Developing Human Brain

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Journal Dev Sci
Specialty Psychology
Date 2012 Jun 20
PMID 22709401
Citations 243
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Abstract

Socioeconomic disparities in childhood are associated with remarkable differences in cognitive and socio-emotional development during a time when dramatic changes are occurring in the brain. Yet, the neurobiological pathways through which socioeconomic status (SES) shapes development remain poorly understood. Behavioral evidence suggests that language, memory, social-emotional processing, and cognitive control exhibit relatively large differences across SES. Here we investigated whether volumetric differences could be observed across SES in several neural regions that support these skills. In a sample of 60 socioeconomically diverse children, highly significant SES differences in regional brain volume were observed in the hippocampus and the amygdala. In addition, SES × age interactions were observed in the left superior temporal gyrus and left inferior frontal gyrus, suggesting increasing SES differences with age in these regions. These results were not explained by differences in gender, race or IQ. Likely mechanisms include differences in the home linguistic environment and exposure to stress, which may serve as targets for intervention at a time of high neural plasticity.

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References
1.
Ostby Y, Tamnes C, Fjell A, Westlye L, Due-Tonnessen P, Walhovd K . Heterogeneity in subcortical brain development: A structural magnetic resonance imaging study of brain maturation from 8 to 30 years. J Neurosci. 2009; 29(38):11772-82. PMC: 6666647. DOI: 10.1523/JNEUROSCI.1242-09.2009. View

2.
Noble K, Norman M, Farah M . Neurocognitive correlates of socioeconomic status in kindergarten children. Dev Sci. 2005; 8(1):74-87. DOI: 10.1111/j.1467-7687.2005.00394.x. View

3.
Kuhl P . Is speech learning 'gated' by the social brain?. Dev Sci. 2006; 10(1):110-20. DOI: 10.1111/j.1467-7687.2007.00572.x. View

4.
Tottenham N, Hare T, Quinn B, McCarry T, Nurse M, Gilhooly T . Prolonged institutional rearing is associated with atypically large amygdala volume and difficulties in emotion regulation. Dev Sci. 2010; 13(1):46-61. PMC: 2817950. DOI: 10.1111/j.1467-7687.2009.00852.x. View

5.
Bradley R, Convyn R, Burchinal M, McAdoo H, Coll C . The home environments of children in the United States part II: relations with behavioral development through age thirteen. Child Dev. 2002; 72(6):1868-86. DOI: 10.1111/1467-8624.t01-1-00383. View