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Dissociable electrophysiological correlates of semantic access of motor and non-motor concepts

机译:运动和非运动概念语义访问的可分解电生理相关性

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摘要

The notion of semantic embodiment posits that concepts are represented in the same neural sensorimotor systems that were involved in their acquisition. However, evidence in support of embodied semantics – in particular the hypothesised contribution of motor and premotor cortex to the representation of action concepts – is varied. Here, we tested the hypothesis that, consistent with semantic embodiment, sensorimotor cortices will rapidly become active while healthy participants access the meaning of visually-presented motor and non-motor action verbs. Event-related potentials revealed early differential processing of motor and non-motor verbs (164–203 ms) within distinct regions of cortex likely reflecting rapid cortical activation of differentially distributed semantic representations. However, we found no evidence for a specific role of sensorimotor cortices in supporting these representations. Moreover, we observed a later modulation of the alpha band (8–12 Hz) from 555–785 ms over central electrodes, with estimated generators within the left superior parietal lobule, which may reflect post-lexical activation of the object-directed features of the motor action concepts. In conclusion, we find no evidence for a specific role of sensorimotor cortices when healthy participants judge the meaning of visually-presented action verbs. However, the relative contribution of sensorimotor cortices to action comprehension may vary as a function of task goals.
机译:语义实施例的概念假定,概念在与获取有关的相同神经感觉运动系统中表示。但是,支持具体语义的证据(尤其是运动皮层和运动前皮层对动作概念表示的假设贡献)是多种多样的。在这里,我们测试了这样的假设:与语义实施例一致,感觉运动皮层将迅速活跃,而健康的参与者访问视觉呈现的运动和非运动动作动词的含义。事件相关电位揭示了大脑皮层不同区域内运动和非运动动词(164–203µms)的早期差异处理,可能反映了差异分布的语义表示的快速皮质激活。然而,我们没有发现感觉运动皮层在支持这些表征中的特定作用的证据。此外,我们观察到中心电极在555–785 ms处对α波段(8–12 Hz)进行了后期调制,估计的生成器位于左上顶小叶内,这可能反映了词法激活后的对象定向特征。运动动作的概念。总之,当健康参与者判断视觉呈现动作动词的含义时,我们没有发现感觉运动皮层具有特定作用的证据。但是,感觉运动皮层对动作理解的相对贡献可能根据任务目标而变化。

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