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Places in the Brain: Bridging Layout and Object Geometry in Scene-Selective Cortex

机译:大脑中的位置:场景选择皮质中的桥接布局和对象几何

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摘要

Diverse animal species primarily rely on sense (left–right) and egocentric distance (proximal–distal) when navigating the environment. Recent neuroimaging studies with human adults show that this information is represented in 2 scene-selective cortical regions—the occipital place area (OPA) and retrosplenial complex (RSC)—but not in a third scene-selective region—the parahippocampal place area (PPA). What geometric properties, then, does the PPA represent, and what is its role in scene processing? Here we hypothesize that the PPA represents relative length and angle, the geometric properties classically associated with object recognition, but only in the context of large extended surfaces that compose the layout of a scene. Using functional magnetic resonance imaging adaptation, we found that the PPA is indeed sensitive to relative length and angle changes in pictures of scenes, but not pictures of objects that reliably elicited responses to the same geometric changes in object-selective cortical regions. Moreover, we found that the OPA is also sensitive to such changes, while the RSC is tolerant to such changes. Thus, the geometric information typically associated with object recognition is also used during some aspects of scene processing. These findings provide evidence that scene-selective cortex differentially represents the geometric properties guiding navigation versus scene categorization.
机译:在环境中航行时,多种动物物种主要依靠感觉(左右)和以自我为中心的距离(近端)。最近对成人进行的神经影像学研究表明,该信息在两个场景选择皮质区域(枕骨位置区域(OPA)和后脾复合体(RSC))中显示,但在第三个场景选择区域(海马旁位置区域(PPA))中表示)。那么,PPA代表什么几何特性?它在场景处理中的作用是什么?在这里,我们假设PPA代表相对长度和角度,这是经典的与对象识别相关的几何特性,但仅在构成场景布局的大面积延伸表面的情况下。使用功能磁共振成像自适应,我们发现PPA确实对场景图片中的相对长度和角度变化敏感,但对可靠地引起对对象选择皮质区域中相同几何变化的响应的对象的图片不敏感。此外,我们发现OPA对此类更改也很敏感,而RSC可以容忍此类更改。因此,在场景处理的某些方面也使用了通常与物体识别相关的几何信息。这些发现提供了证据,表明场景选择性皮层差异地代表了导航与场景分类的几何特性。

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