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Dissociable roles of the hippocampus and parietal cortex in processing of coordinate and categorical spatial information

机译:海马和顶叶皮层在坐标和分类空间信息处理中的分离作用

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摘要

It is generally accepted that spatial relationships and spatial information are critically involved in the formation of cognitive maps. It remains unclear, however, which properties of the world are explicitly encoded and how these properties might contribute to the formation of such maps. It has been proposed that spatial relations are encoded either categorically, such that the relative positions of objects are defined in prepositional terms; or as visual coordinates, such that the precise distances between objects are represented. Emerging evidence from human and animal studies suggests that distinct neural circuits might underlie categorical and coordinate representations of object locations during active spatial navigation. Here we review evidence for the hypothesis that the hippocampal formation is crucial for encoding coordinate information, whereas the parietal cortex is crucial for encoding categorical spatial information. Our short review provides a novel view regarding the functions and potential interactions of these two regions during active spatial navigation.
机译:人们普遍认为,空间关系和空间信息与认知图的形成至关重要。但是,尚不清楚世界的哪些属性被明确编码,以及这些属性如何有助于此类地图的形成。已经提出,可以对空间关系进行分类编码,从而以介词形式定义对象的相对位置;或作为视觉坐标,以便表示对象之间的精确距离。来自人类和动物研究的新证据表明,在主动空间导航期间,不同的神经回路可能是对象位置的分类和坐标表示。在这里,我们回顾了以下假设的证据:海马形成对于编码坐标信息至关重要,而顶叶皮层对于编码分类空间信息至关重要。我们的简短回顾提供了有关这两个区域在主动空间导航过程中的功能和潜在相互作用的新颖观点。

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