Department of Psychology, Northwestern University, Evanston, IL 60208, USA.
Cognition. 2012 Feb;122(2):210-27. doi: 10.1016/j.cognition.2011.11.002. Epub 2011 Nov 26.
Visual processing breaks the world into parts and objects, allowing us not only to examine the pieces individually, but also to perceive the relationships among them. There is work exploring how we perceive spatial relationships within structures with existing representations, such as faces, common objects, or prototypical scenes. But strikingly, there is little work on the perceptual mechanisms that allow us to flexibly represent arbitrary spatial relationships, e.g., between objects in a novel room, or the elements within a map, graph or diagram. We describe two classes of mechanism that might allow such judgments. In the simultaneous class, both objects are selected concurrently. In contrast, we propose a sequential class, where objects are selected individually over time. We argue that this latter mechanism is more plausible even though it violates our intuitions. We demonstrate that shifts of selection do occur during spatial relationship judgments that feel simultaneous, by tracking selection with an electrophysiological correlate. We speculate that static structure across space may be encoded as a dynamic sequence across time. Flexible visual spatial relationship processing may serve as a case study of more general visual relation processing beyond space, to other dimensions such as size or numerosity.
视觉处理将世界分成部分和对象,使我们不仅可以单独检查这些部分,还可以感知它们之间的关系。有一些工作探讨了我们如何在现有的表示形式(如人脸、常见物体或典型场景)中感知结构内的空间关系。但令人惊讶的是,很少有工作研究允许我们灵活表示任意空间关系的感知机制,例如,在一个新房间中的物体之间,或者地图、图表或图表中的元素之间。我们描述了两种可能允许进行此类判断的机制。在同时类中,同时选择两个对象。相比之下,我们提出了一个顺序类,其中对象随着时间的推移逐个选择。我们认为,即使违反直觉,这种后一种机制也更合理。我们通过跟踪与电生理相关的选择来证明,在感觉同时的空间关系判断中确实会发生选择的转移。我们推测,跨越空间的静态结构可能会被编码为跨越时间的动态序列。灵活的视觉空间关系处理可能是对空间以外的其他维度(如大小或数量)的更一般视觉关系处理的案例研究。