Brain–behavior relationships in the experience and regulation of negative emotion in healthy children: Implications for risk for childhood depression

Взаимосвязи «мозг‑поведение» в переживании и регуляции негативных эмоций у здоровых детей: значение для риска детской депрессии
Deanna M. Barch, David Pagliaccio, Katherine R. Luking, Joan L. Luby, Andrew C. Belden
2014-11-01

amygdala volumeemotion reactivity regionsemotion regulation skillshippocampus volumeinsula volume
Structural and functional alterations in a variety of brain regions have been associated with depression and risk for depression across the life span. A majority of these regions are associated with emotion reactivity and/or regulation. However, it is generally unclear what mechanistic role these alterations play in the etiology of depression. A first step toward understanding this is to characterize the relationships between variation in brain structure/function and individual differences in depression severity and related processes, particularly emotion regulation. To this end, the current study examines how brain structure and function predict concurrent and longitudinal measures of depression symptomology and emotion regulation skills in psychiatrically healthy school-age children (N = 60). Specifically, we found that smaller hippocampus volumes and greater responses to sad faces in emotion reactivity regions predict increased depressive symptoms at the time of scan, whereas larger amygdala volumes, smaller insula volumes, and greater responses in emotion reactivity regions predict decreased emotion regulation skills. In addition, larger insula volumes predict improvements in emotion regulation skills even after accounting for emotion regulation at the time of scan. Understanding brain-behavior relationships in psychiatrically healthy samples, especially early in development, will help inform normative developmental trajectories and neural alterations in depression and other affective pathology.
1
Greater neural responses to sad faces in emotion-reactivity regions predict increased depressive symptoms at the time of scan.
2
Larger amygdala volumes predict decreased emotion regulation skills in psychiatrically healthy children.
3
Larger insula volumes predict improvements in emotion regulation skills longitudinally, even after accounting for baseline emotion regulation.
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Smaller hippocampus volumes predict increased depressive symptoms at the time of scan in psychiatrically healthy school-age children.
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Smaller insula volumes predict decreased emotion regulation skills in psychiatrically healthy children.

Psychiatrically healthy school-age children (N = 60)

Relationships between brain structure and function (hippocampus, amygdala, insula volumes; neural responses to sad faces/emotion reactivity regions) and individual differences in depressive symptoms and emotion regulation skills, concurrently and longitudinally

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2014-11-01
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Deanna M. Barch
David Pagliaccio
Katherine R. Luking
Joan L. Luby
Andrew C. Belden
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