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Parieto-frontal circuits during observation of hidden and visible motor acts in children. A high-density EEG source imaging study

机译:儿童观察隐性和可见运动行为时的额叶额叶回路。高密度脑电图源成像研究

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摘要

Several studies showed that in the human brain specific premotor and parietal areas are activated during the execution and observation of motor acts. The activation of this premotor-parietal network displaying the so-called Mirror Mechanism (MM) was proposed to underpin basic forms of action understanding. However, the functional properties of the MM in children are still largely unknown. In order to address this issue, we recorded high-density EEG from 12 children (6 female, 6 male; average age 10.5, SD ±2.15). Data were collected when children observed video clips showing hands grasping objects in two different experimental conditions: (1) Full Vision, in which the motor act was fully visible; (2) Hidden, in which the interaction between the hand and the object was not visible. Event-related potentials (ERPs) and topographic map analyses were used to investigate the temporal pattern of the ERPs and their brain source of localization, employing a children template of the Montreal Neurological Institute. Results showed that two different parieto-premotor circuits are activated by the observation of object-related hand reaching-to-grasping motor acts in children. The first circuit comprises the ventral premotor and the inferior parietal cortices. The second one comprises the dorsal premotor and superior parietal cortices. The activation of both circuits is differently lateralized and modulated in time, and influenced by the amount of visual information available about the hand grasping-related portion of the observed motor acts.
机译:多项研究表明,在人脑中,执行和观察运动行为期间会激活特定的运动前和顶区。提议激活显示所谓的镜像机制(MM)的运动前顶网络,以加强对动作理解的基本形式。但是,MM在儿童中的功能特性仍然未知。为了解决这个问题,我们记录了12名儿童(6名女性,6名男性;平均年龄10.5,SD±2.15)的高密度脑电图。当孩子们观察到在两个不同的实验条件下观察到的视频片段显示了手抓物体时,就收集了数据:(1)完整视野,运动行为完全可见; (2)隐藏,手和物体之间的交互不可见。事件相关电位(ERP)和地形图分析用于调查ERP的时间模式及其大脑的本地化来源,并使用了蒙特利尔神经病学研究所的儿童模板。结果表明,通过观察儿童中与对象相关的手伸手抓动作动作,可以激活两个不同的壁前运动回路。第一回路包括腹侧前运动和顶下皮质。第二个包括背运动前和顶壁皮质。两个电路的激活在时间上进行了不同的横向化和调制,并且受有关所观察到的电机动作的与手抓相关部分有关的可视信息量的影响。

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