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Experience with the Cardinal Coordinate System Contributes to the Precision of Cognitive Maps

机译:基数坐标系的经验有助于认知图的精度

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摘要

The coordinate system has been proposed as a fundamental and cross-culturally used spatial representation, through which people code location and direction information in the environment. Here we provided direct evidence demonstrating that daily experience with the cardinal coordinate system (i.e., east, west, north, and south) contributed to the representation of cognitive maps. Behaviorally, we found that individuals who relied more on the cardinal coordinate system for daily navigation made smaller errors in an indoor pointing task, suggesting that the cardinal coordinate system is an important element of cognitive maps. Neurally, the extent to which individuals relied on the cardinal coordinate system was positively correlated with the gray matter volume of the entorhinal cortex, suggesting that the entorhinal cortex may serve as the neuroanatomical basis of coordinate-based navigation (the entorhinal coordinate area, ECA). Further analyses on the resting-state functional connectivity revealed that the intrinsic interaction between the ECA and two hippocampal sub-regions, the subiculum and cornu ammonis, might be linked with the representation precision of cognitive maps. In sum, our study reveals an association between daily experience with the cardinal coordinate system and cognitive maps, and suggests that the ECA works in collaboration with hippocampal sub-regions to represent cognitive maps.
机译:坐标系已被提出作为一种基本的和跨文化使用的空间表示,人们可以通过该空间表示对环境中的位置和方向信息进行编码。在这里,我们提供了直接的证据证明基本坐标系(即东,西,北和南)的日常经验有助于认知图的表示。从行为上讲,我们发现个人在日常导航中更多地依赖于基坐标系,在室内指向任务中犯的错误较小,这表明基坐标系是认知图的重要组成部分。总的来说,个体对基本坐标系的依赖程度与内嗅皮层的灰质体积呈正相关,这表明内嗅皮层可以作为基于坐标导航的神经解剖学基础(内嗅坐标区,ECA) 。对静止状态功能连通性的进一步分析表明,ECA与两个海马亚区,下丘脑和角膜氨纶之间的内在相互作用可能与认知图的表达精度有关。总而言之,我们的研究揭示了基本座标系统的日常经验与认知图之间的关联,并暗示ECA与海马子区域协同工作以代表认知图。

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