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Observation of Point-Light-Walker Locomotion Induces Motor Resonance When Explicitly Represented; An EEG Source Analysis Study

机译:明确表示点光沃克运动引起的电机共振。脑电来源分析研究

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摘要

Understanding human motion, to infer the goal of others' actions, is thought to involve the observer's motor repertoire. One prominent class of actions, the human locomotion, has been object of several studies, all focused on manipulating the shape of degraded human figures like point-light walker (PLW) stimuli, represented as walking on the spot. Nevertheless, since the main goal of the locomotor function is to displace the whole body from one position to the other, these stimuli might not fully represent a goal-directed action and thus might not be able to induce the same motor resonance mechanism expected when observing a natural locomotion. To explore this hypothesis, we recorded the event-related potentials (ERP) of canonical/scrambled and translating/centered PLWs decoding. We individuated a novel ERP component (N2c) over central electrodes, around 435 ms after stimulus onset, for translating compared to centered PLW, only when the canonical shape was preserved. Consistently with our hypothesis, sources analysis associated this component to the activation of trunk and lower legs primary sensory-motor and supplementary motor areas. These results confirm the role of own motor repertoire in processing human action and suggest that ERP can detect the associated motor resonance only when the human figure is explicitly involved in performing a meaningful action.
机译:理解人类的动作以推断他人行为的目标,被认为涉及观察者的运动能力。一类重要的动作,即人类运动,已成为数项研究的对象,所有研究都集中于操纵退化的人物的形状,如点光源步行者(PLW)刺激,表现为当场行走。但是,由于运动功能的主要目标是将整个身体从一个位置移动到另一个位置,因此这些刺激可能无法完全代表目标作用,因此可能无法诱发观察时预期的相同运动共振机制自然的运动。为了探索这一假设,我们记录了规范/加扰和翻译/居中PLW解码的事件相关电位(ERP)。我们仅在保留规范形状的情况下,在中心电极上大约435毫秒后在中央电极上对新颖的ERP组件(N2c)进行了翻译,以与中心PLW相比进行翻译。与我们的假设一致,来源分析将这一成分与躯干和小腿的主要感觉运动和辅助运动区域的激活相关联。这些结果证实了自己的运动库在处理人类动作中的作用,并暗示只有当人类明确参与执行有意义的动作时,ERP才能检测到相关的运动共振。

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