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Inter-brain amplitude correlation differentiates cooperation from competition in a motion-sensing sports game

机译:脑间振幅相关区分了在运动传感运动游戏中的竞争中的合作

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摘要

Cooperation and competition are two basic modes of human interaction. Their underlying neural mechanisms, especially from an interpersonal perspective, have not been fully explored. Using the electroencephalograph-based hyperscanning technique, the present study investigated the neural correlates of both cooperation and competition within the same ecological paradigm using a classic motion-sensing tennis game. Both the inter-brain coupling (the inter-brain amplitude correlation and inter-brain phase-locking) and the intra-brain spectral power were analyzed. Only the inter-brain amplitude correlation showed a significant difference between cooperation and competition, with different spatial patterns at theta, alpha and beta frequency bands. Further inspection revealed distinct inter-brain coupling patterns for cooperation and competition; cooperation elicited positive inter-brain amplitude correlation at the delta and theta bands in extensive brain regions, while competition was associated with negative occipital inter-brain amplitude correlation at the alpha and beta bands. These findings add to our knowledge of the neural mechanisms of cooperation and competition and suggest the significance of adopting an inter-brain perspective in exploring the neural underpinnings of social interaction in ecological contexts.
机译:合作与竞争是人类互动的两种基本模式。他们的潜在的神经机制,特别是从人际角度来看,尚未完全探索。使用基于脑电图的静脉扫描技术,本研究调查了使用经典运动传感网球比赛的同一生态范式的合作与竞争的神经相关性。分析了脑内脑内耦合(脑间振幅相关和脑内锁相间锁相)和脑内谱功率。只有脑内振幅相关性显示在θ,α和β频带的不同空间模式之间存在显着差异。进一步检查揭示了合作与竞争的不同脑内耦合模式;合作在广泛的脑区中的三角洲和θ带引发了积极的脑部振幅相关,而竞争与α和β带的负痛苦间振幅相关联。这些调查结果增加了我们对合作与竞争的神经机制的了解,并提出了在生态背景下探索社会互动的神经内巩固中采用脑内视角的重要性。

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