Acute effects of intense interval versus aerobic exercise on children's behavioral and neuroelectric measures of inhibitory control

高强度间歇训练 强度(物理) 间歇训练 抑制性控制 心理学 物理疗法 有氧运动 方差分析 事件相关电位 听力学 医学 物理医学与康复 发展心理学 脑电图 内科学 认知 神经科学 物理 量子力学
作者
Shih‐Chun Kao,Nicholas W. Baumgartner,Kyoungmin Noh,Chun‐Hao Wang,Sara A. Schmitt
出处
期刊:Journal of Science and Medicine in Sport [Elsevier BV]
卷期号:26 (6): 316-321 被引量:4
标识
DOI:10.1016/j.jsams.2023.05.003
摘要

Objectives Determine the acute effect of high-intensity interval training as an alternative of moderate-intensity aerobic exercise on behavioral and neuroelectric measures of inhibitory control in preadolescent children. Design A randomized controlled trial. Methods Seventy-seven children (8–10 years) were randomly assigned to three groups to complete a modified flanker task to measure behavioral and neuroelectric (N2/P3 of event-related potential and frontal theta oscillations) outcomes of inhibitory control before and after a 20-min session of high-intensity interval training (N = 27), moderate-intensity aerobic exercise (N = 25), and sedentary reading activity (N = 25). Results The accuracy of the inhibitory control performance improved over time across three groups but response time was selectively improved only for the high-intensity interval training group. Analysis on N2 showed a time-related decrease in N2 latency selectively for the high-intensity interval training but not the other groups. Analysis on P3 showed a time-related decrease in P3 amplitude for the sedentary and high-intensity interval training groups while the moderate-intensity aerobic exercise group exhibited maintained P3 amplitude from the pretest to the posttest and a larger P3 amplitude compared with the high-intensity interval training group at the posttest. While there was evidence of conflict-induced modulation of frontal theta oscillations, such an effect was unaffected by exercise interventions. Conclusions A single bout of high-intensity interval training has facilitating effects on the processing speed involving inhibitory control in preadolescent children but not neuroelectric index of attention allocation that only benefited from moderate-intensity aerobic exercise.
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