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Peripersonal versus extrapersonal visual scene information for egocentric direction and position perception

机译:围栏与外临时视觉场景信息,适用于Enocentric方向和位置感知

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摘要

When perceiving the visual environment, people simultaneously perceive their own direction and position in the environment (i.e., egocentric spatial perception). This study investigated what visual information in a scene is necessary for egocentric spatial perceptions. In two perception tasks (the egocentric direction and position perception tasks), observers viewed two static road images presented sequentially. In Experiment 1, the critical manipulation involved an occluded region in the road image, an extrapersonal region (far-occlusion) and a peripersonal region (near-occlusion). Egocentric direction perception was worse in the far-occlusion condition than in the no-occlusion condition, and egocentric position perceptions were worse in the far- and near-occlusion conditions than in the no-occlusion condition. In Experiment 2, we conducted the same tasks manipulating the observers' gaze location in a scenean extrapersonal region (far-gaze), a peripersonal region (near-gaze) and the intermediate region between the former two (middle-gaze). Egocentric direction perception performance was the best in the far-gaze condition, and egocentric position perception performances were not different among gaze location conditions. These results suggest that egocentric direction perception is based on fine visual information about the extrapersonal region in a road landscape, and egocentric position perception is based on information about the entire visual scene.
机译:在感知视觉环境时,人们同时在环境中感知自己的方向和位置(即,Epentric空间感知)。本研究调查了场景中的视觉信息对于Enocentric空间看法是必要的。在两个感知任务中(Egocentric方向和位置感知任务),观察者观看了依次呈现的两个静态路面图像。在实验1中,临界操作涉及路面图像中的闭塞区域,外部区域(远闭塞)和横闭合区域(近闭塞)。在远闭塞条件下,Egocentric方向感知比在无闭塞条件下更差,并且在远闭塞条件下的异常位置感知比在无闭塞条件下更差。在实验2中,我们进行了操纵观察者的凝视位置的相同任务,在风景区域(远凝视),横向区域(近凝视)和前两个(中凝版)之间的中间区域中的观察者的凝视位置。 Egocentric方向感知性能是远凝游条件的最佳状态,并且在凝视定位条件下,Egentric位置感知性能在不同之处。这些结果表明,EPECENTRIC方向感知基于道路景观中的外部区域的精细视觉信息,并且EGENTRIC位置感知基于关于整个视觉场景的信息。

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