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Exploring the EEG mu rhythm associated with observation and execution of a goal-directed action in 14-month-old preterm infants

机译:探索与观察和执行14个月大早产儿的目标定向行动相关的脑电节律

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摘要

Electroencephalographic mu rhythm desynchronization is thought to reflect Mirror Neuron System (MNS) activity and represents an important neural correlate of the coupling between action execution and perception. It is still unclear if the MNS in human ontogeny is already available at the beginning of postnatal life and how early experience impacts its development. Premature birth provides a “natural condition” for investigating the effects of early, atypical extra-uterine experience on MNS. The main aim of the present study was to investigate whether the MNS activity is associated with prematurity. We compared the mu rhythm activity in preterm (PT) and full-term (FT) 14-month old infants during an action observation/execution (AO/AE) task. Mu rhythm desynchronization was computed over frontal, central, parietal and occipital regions. Both groups showed mu rhythm suppression in all the scalp regions during action execution. Different desynchronization patterns emerged during action observation. Specifically, FT infants showed mu suppression in the right frontal, bilateral parietal and occipital regions; whereas PT infants exhibited mu suppression only in the right parietal region. Overall, these preliminary findings indicate that an atypical extra uterine experience might have an impact on the MNS activity.
机译:脑电图的多节律不同步被认为反映了镜像神经元系统(MNS)的活动,并且代表了动作执行与感知之间耦合的重要神经相关因素。尚不清楚人类个体发育中的MNS是否在产后开始就已经存在,以及早期经历如何影响其发展。早产为调查早期非典型宫外经历对MNS的影响提供了“自然条件”。本研究的主要目的是调查MNS活性是否与早产有关。我们比较了行动观察/执行(AO / AE)任务期间早产(PT)和足月(FT)14个月大婴儿的mu节律活动。在额叶,中央,顶叶和枕叶区域计算Mu节律失步。两组均在动作执行过程中在所有头皮区域均显示出节律抑制。在动作观察过程中出现了不同的失步模式。具体而言,FT婴儿在右额叶,双侧顶叶和枕叶区域表现出mu抑制作用;而PT婴儿仅在右侧壁区域表现出mu抑制作用。总体而言,这些初步发现表明非典型的子宫外经历可能会对MNS活动产生影响。

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