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Object visibility alters the relative contribution of ventral visual stream and mirror neuron system to goal anticipation during action observation

机译:对象可见性改变了动作观察过程中腹侧视觉流和镜像神经元系统对目标预期的相对贡献

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摘要

We used fMRI to study the effect of hiding the target of a grasping action on the cerebral activity of an observer whose task was to anticipate the size of the object being grasped. Activity in the putative mirror neuron system (pMNS) was higher when the target was concealed from the view of the observer and anticipating the size of the object being grasped requested paying attention to the hand kinematics. In contrast, activity in ventral visual areas outside the pMNS increased when the target was fully visible, and the performance improved in this condition. A repetition suppression analysis demonstrated that in full view, the size of the object being grasped by the actor was encoded in the ventral visual stream. Dynamic causal modelling showed that monitoring a grasping action increased the coupling between the parietal and ventral premotor nodes of the pMNS. The modulation of the functional connectivity between these nodes was correlated with the subject’s capability to detect the size of hidden objects. In full view, synaptic activity increased within the ventral visual stream, and the connectivity with the pMNS was diminished. The re-enactment of observed actions in the pMNS is crucial when interpreting others’ actions requires paying attention to the body kinematics. However, when the context permits, visual-spatial information processing may complement pMNS computations for improved action anticipation accuracy.
机译:我们使用功能磁共振成像来研究隐藏抓握动作目标对观察者脑活动的影响,该观察者的任务是预期被抓物体的大小。当从观察者的角度隐藏目标并预测要抓取的物体的大小时,假定的镜像神经元系统(pMNS)的活动较高,请注意手运动学。相反,当目标完全可见时,pMNS外侧腹侧视觉区域的活动增加,并且在这种情况下性能得到改善。重复抑制分析表明,从全视角看,演员抓住的物体的大小已编码在腹侧视觉流中。动态因果模型显示,监控抓紧动作可增强pMNS的顶叶和腹前运动节点之间的耦合。这些节点之间的功能连通性的调制与对象检测隐藏对象大小的能力有关。在全视图下,腹侧视觉流中的突触活性增加,与pMNS的连通性降低。当解释他人的动作需要注意人体运动学时,在pMNS中重新实施观察到的动作至关重要。但是,当上下文允许时,视觉空间信息处理可以补充pMNS计算,以提高动作预期的准确性。

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