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Published on: February 25, 2016
Validation of autonomic and endocrine reactivity to a laboratory stressor in young children
Leslie E Roos1, Ryan J Giuliano1, Kathryn G Beauchamp1
1University of Oregon, Department of Psychology, 1227 University of Oregon, Eugene, OR, USA.
Insights
This study validates a modified matching task as a reliable laboratory stressor for children. The task effectively induced hypothalamic-pituitary-adrenal (HPA) axis and autonomic nervous system (ANS) activation, crucial for developmental research.
Area of Science:
- Child Psychology
- Neuroscience
- Developmental Biology
Background:
- Validating laboratory stress paradigms is crucial for understanding children's stress response systems.
- Early childhood research is limited by difficulties in reliably inducing cortisol responses.
- Previous studies lacked control conditions and concurrent autonomic nervous system (ANS) reactivity examination.
Purpose of the Study:
- To validate a modified matching task as a laboratory stressor.
- To assess its ability to induce hypothalamic-pituitary-adrenal (HPA) axis and ANS activation.
- To compare stress and control conditions in children.
Main Methods:
- A modified matching task with an unfamiliar assessor was used.
- A control condition with a matched task was included.
- Hypothalamic-pituitary-adrenal (HPA) axis (cortisol) and autonomic nervous system (ANS) reactivity were measured.
Main Results:
- The modified matching task successfully induced significant HPA and ANS activation.
- The stressor group showed increased cortisol, while the control group remained stable.
- The stressor group exhibited greater sympathetic activity and parasympathetic withdrawal, especially with failure signals.
Conclusions:
- The modified matching task is a validated laboratory stressor for children.
- It reliably induces both HPA axis and ANS responses.
- This paradigm will aid future research on HPA and ANS function in child development.
Abstract:
The validation of laboratory paradigms that reliably induce a stress response [including hypothalamic-pituitary-adrenal (HPA) axis and autonomic nervous system (ANS) activation], is critical for understanding how children's stress-response systems support emotional and cognitive function. Early childhood research to date is markedly limited, given the difficulty in establishing paradigms that reliably induce a cortisol response. Furthermore, research to date has not included a control condition or examined concurrent ANS reactivity. We addressed these limitations by characterizing the extent to which a modified matching task stressor paradigm induces HPA and ANS activation, beyond a closely matched control condition. Modifications include an unfamiliar and unfriendly assessor to increase the stressful nature of the task. Results validate the matching task as a laboratory stressor, with significant differences in HPA and ANS responsivity between conditions. The Stressor group exhibited a cortisol increase post-stressor, while the Control group was stable over time. Children in both conditions exhibited reduced parasympathetic activity to the first-half of the task, but in the second-half, only children in the Stressor condition, who were experiencing exaggerated signals of failure, exhibited further parasympathetic decline. The Stressor condition induced higher sympathetic activity (versus Control) throughout the task, with exaggerated second-half differences. Within the Stressor condition, responsivity was convergent across systems, with greater cortisol reactivity correlated with the magnitude of parasympathetic withdrawal and sympathetic engagement. Future research employing the matching task will facilitate understanding the role of HPA and ANS function in development.
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