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Prenatal tobacco exposure and self-regulation in early childhood: Implications for developmental psychopathology
Sandra A Wiebe1, Caron A C Clark2, Desiree M De Jong3
1University of Alberta.
Insights
Prenatal tobacco exposure (PTE) affects children's motivational self-regulation, particularly in boys. This neurocognitive impact may explain links between PTE and later disruptive behaviors.
Area of Science:
- Neuroscience
- Developmental Psychology
- Behavioral Science
Background:
- Prenatal tobacco exposure (PTE) is linked to childhood disruptive behavior.
- Neurocognitive mechanisms underlying this association require further investigation.
Purpose of the Study:
- To examine the neurocognitive effects of PTE on self-regulation in early childhood.
- To investigate potential sex differences in PTE's impact on self-regulation.
Main Methods:
- Longitudinal study of 151 children assessed at age three.
- Utilized a developmental battery measuring cognitive and motivational self-regulation.
- Controlled for confounding factors using propensity scores.
Main Results:
- PTE was associated with motivational self-regulation (delaying gratification) but not cognitive self-regulation (working memory, inhibition).
- PTE's effect on motivational self-regulation was stronger in boys than girls.
- This sex difference persisted after controlling for confounding variables.
Conclusions:
- PTE may impact neurodevelopment differently in boys and girls, potentially affecting reward sensitivity and emotion regulation circuits.
- Findings suggest PTE's neurocognitive effects may contribute to its stronger association with disruptive behavior disorders than attention problems.
Abstract:
Prenatal tobacco exposure (PTE) has a well-documented association with disruptive behavior in childhood, but the neurocognitive effects of exposure that underlie this link are not sufficiently understood. The present study was designed to address this gap, through longitudinal follow-up in early childhood of a prospectively enrolled cohort with well-characterized prenatal exposure. Three-year-old children (n = 151) were assessed using a developmentally sensitive battery capturing both cognitive and motivational aspects of self-regulation. PTE was related to motivational self-regulation, where children had to delay approach to attractive rewards, but not cognitive self-regulation, where children had to hold information in mind and inhibit prepotent motor responses. Furthermore, PTE predicted motivational self-regulation more strongly in boys than in girls, and when propensity scores were covaried to control for confounding risk factors, the effect of PTE on motivational self-regulation was significant only in boys. These findings suggest that PTE's impact on neurodevelopment may be greater in boys than in girls, perhaps reflecting vulnerability in neural circuits that subserve reward sensitivity and emotion regulation, and may also help to explain why PTE is more consistently related to disruptive behavior disorders than attention problems.
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