神经反射
心理学
额叶
阿尔法(金融)
神经科学
神经活动
人工神经网络
运动员
任务(项目管理)
认知心理学
脑电图
听力学
发展心理学
计算机科学
机器学习
医学
物理疗法
心理测量学
经济
结构效度
管理
作者
Edson Filho,Urska Dobersek,Tammy-Ann Husselman
标识
DOI:10.1007/s00221-021-06078-9
摘要
We examined changes in brain rhythms in relation to optimal performance in self-paced sports. Eight studies met the inclusion/exclusion criteria, representing 153 participants and eight different sports. We found that (a) optimal performance is characterised by increased alpha (g = .62, p = .02) and theta (g = .74, p = .002) across the cortex; (b) during optimal performance the frontal lobe is more relaxed (higher alpha; g = 1.06, p = .18) and less busy (lower theta; g = .38, p = .08), in comparison to the other brain lobes; (c) for the same given task, experts’ brains are more relaxed (higher alpha, g = .89, p = .34) and less busy (lower theta, g = .91, p = .54) than novices’ brains. Theoretically, our findings suggest that neural efficiency, neural proficiency, and transient hypofrontality are likely complementary neural mechanisms that underpin optimal performance. In practice, neurofeedback training should teach athletes how to amplify and suppress their alpha and theta activity across the brain during all movement stages.
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