压力源
特里尔社会压力测试
唤醒
心理学
冷压试验
卡路里
事件相关电位
压力(语言学)
心率
发展心理学
听力学
脑电图
临床心理学
血压
医学
内科学
战斗或逃跑反应
社会心理学
精神科
生物
基因
生物化学
哲学
语言学
作者
Whitney D. Allen,Rebekah E. Rodeback,Kaylie A. Carbine,Ariana Hedges‐Muncy,James D. LeCheminant,Patrick R. Steffen,Michael J. Larson
出处
期刊:Appetite
[Elsevier]
日期:2022-03-01
卷期号:170: 105862-105862
被引量:8
标识
DOI:10.1016/j.appet.2021.105862
摘要
Stress influences many health-related behaviors including diet and nutrition intake, often resulting in increased calorie intake, fewer healthy eating behaviors, and poorer nutrition. Food intake is modulated by inhibitory control and has important implications for our physical, mental, and emotional health. Yet, little is known about the relationship between stress and food-related inhibitory control. We tested the influence of a short-term experimental stressor on behavioral and event-related potential (ERP; N2 and P3 components) measures of food-related inhibitory control. Ninety-seven healthy participants were randomly assigned to complete the Trier Social Stress Test (TSST) (n = 48, 27 females [52.9%]) or a neutral control condition (n = 49, 35 females [70%]) immediately followed by food-specific go/no-go and neutral go/no-go tasks while electroencephalogram (EEG) data were recorded. Stress levels were successfully manipulated, with heightened self-report and physiological measures (heart rate and systolic blood pressure) of the stress response in individuals who completed the TSST compared to control. As expected, the high calorie food-specific go/no-go task elicited larger N2 amplitude than the neutral task. N2 component amplitude was also significantly larger following the TSST relative to the control task. There were no significant between-group or task differences for P3 amplitude or behavioral measures. Findings suggest heightened N2 amplitude following psychological stress that is not specific to food or inhibition processes and may reflect heightened arousal following stress. Future research in individuals with overweight/obesity or experiencing chronic stress will further clarify the role of stress in food-related inhibitory control.
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