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Electrophysiological Correlates of Object Location and Object Identity Processing in Spatial Scenes

机译:空间场景中对象位置和对象身份处理的电生理相关性

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摘要

The ability to quickly detect changes in our surroundings has been crucial to human adaption and survival. In everyday life we often need to identify whether an object is new and if an object has changed its location. In the current event-related potential (ERP) study we investigated the electrophysiological correlates and the time course in detecting different types of changes of an objecṫs location and identity. In a delayed match-to-sample task participants had to indicate whether two consecutive scenes containing a road, a house, and two objects, were either the same or different. In six randomly intermixed conditions the second scene was identical, one of the objects had changed its identity, one of the objects had changed its location, or the objects had switched locations. The results reveal different time courses for the processing of identity and location changes in spatial scenes. Whereas location changes elicited a posterior N2 effect, indicating early mismatch detection, followed by a P3 effect reflecting post-perceptual processing, identity changes elicited an anterior N3 effect, which was delayed and functionally distinct from the N2 effect found for the location changes. The condition in which two objects switched position elicited a late ERP effect, reflected by a P3 effect similar to that obtained for the location changes. In sum, this study is the first to cohesively show different time courses for the processing of location changes, identity changes, and object switches in spatial scenes, which manifest themselves in different electrophysiological correlates.
机译:快速检测周围环境变化的能力对于人类适应和生存至关重要。在日常生活中,我们经常需要确定一个物体是否是新物体以及一个物体是否改变了位置。在当前事件相关电位(ERP)研究中,我们研究了电生理相关性和时程,以检测对象位置和身份的不同类型的变化。在延迟的“样本匹配”任务中,参与者必须指出包含道路,房屋和两个物体的两个连续场景是相同还是不同。在六个随机混合的条件下,第二个场景是相同的,一个对象改变了其身份,一个对象改变了其位置,或者这些对象改变了位置。结果揭示了用于处理空间场景中的身份和位置变化的不同时程。位置变化引起后N2效应,指示早期失配检测,然后是反映感知后处理的P3效应,身份变化引起前N3效应,该效应被延迟并且在功能上不同于针对位置变化发现的N2效应。两个对象切换位置的条件会引起较晚的ERP效果,反映在P3效果上,类似于位置更改所获得的效果。总而言之,这项研究是第一个凝聚力地展示不同时程以处理空间场景中的位置变化,身份变化和对象切换的方法,这些过程以不同的电生理相关性表现出来。

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