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Child brain exhibits a multi-rhythmic response to attachment cues

机译:儿童大脑对依恋暗示表现出多种节奏反应

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摘要

Research on the human parental brain implicated brain networks involved in simulation, mentalization and emotion processing and indicated that stimuli of own parent–child interaction elicit greater integration among networks supporting attachment. Here, we examined children’s neural activation while viewing own parent–child interactions and asked whether similar networks activate when children are exposed to attachment stimuli. Sixty-five 11-year-old children underwent magnetoencephalography (MEG) while observing own vs unfamiliar mother-child interaction. Own mother–child interactions elicited a greater neural response across distributed brain areas including alpha suppression in posterior regions, theta enhancement in the fusiform gyrus and beta- and gamma-band oscillations across a wide cluster in the right temporal cortex, comprising the superior temporal sulcus/superior temporal gyrus and insula. Theta and gamma activations were associated with the degree of mother–child social synchrony in the home ecology. Findings from this exploratory study are the first to show activations in children that are similar to previous findings in parents and comparable associations between social synchrony and gamma oscillations in temporal regions. Results indicate that attachment stimuli elicit a strong neural response in children that spreads across a wide range of oscillations, underscoring the considerable neural resources allocated to this fundamental, survival-related cue.
机译:对人类父母大脑的研究牵涉到涉及模拟,心理化和情感加工的大脑网络,并指出,亲子互动的刺激会引发支持依恋关系的网络之间更大的整合。在这里,我们在查看自己的亲子互动时检查了孩子的神经激活情况,并询问当孩子受到依恋刺激时类似的网络是否会激活。 65名11岁儿童接受了脑磁图(MEG)检查,同时观察了自己与不熟悉的母子互动。亲子互动会在分布的大脑区域引起更大的神经反应,包括后部区域的α抑制,梭状回的theta增强以及右侧颞皮层(包括颞上沟)的整个簇中的β和γ波段振荡/颞上回和绝缘。 θ和γ的激活与家庭生态系统中母子社会的同步程度有关。这项探索性研究的结果首次显示出儿童中的激活与父母先前的发现相似,以及社会同步性与颞叶区域伽马振动之间的可比关联。结果表明,依恋刺激会引起儿童强烈的神经反应,并在广泛的振荡范围内扩散,这突显了分配给这种与生存相关的基本提示的大量神经资源。

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