首页> 美国卫生研究院文献>Cerebral Cortex (New York NY) >Hippocampus Retrosplenial and Parahippocampal Cortices Encode Multicompartment 3D Space in a Hierarchical Manner
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Hippocampus Retrosplenial and Parahippocampal Cortices Encode Multicompartment 3D Space in a Hierarchical Manner

机译:海马脾后和海马旁皮质以多层方式编码多隔室3D空间

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摘要

Humans commonly operate within 3D environments such as multifloor buildings and yet there is a surprising dearth of studies that have examined how these spaces are represented in the brain. Here, we had participants learn the locations of paintings within a virtual multilevel gallery building and then used behavioral tests and fMRI repetition suppression analyses to investigate how this 3D multicompartment space was represented, and whether there was a bias in encoding vertical and horizontal information. We found faster response times for within-room egocentric spatial judgments and behavioral priming effects of visiting the same room, providing evidence for a compartmentalized representation of space. At the neural level, we observed a hierarchical encoding of 3D spatial information, with left anterior hippocampus representing local information within a room, while retrosplenial cortex, parahippocampal cortex, and posterior hippocampus represented room information within the wider building. Of note, both our behavioral and neural findings showed that vertical and horizontal location information was similarly encoded, suggesting an isotropic representation of 3D space even in the context of a multicompartment environment. These findings provide much-needed information about how the human brain supports spatial memory and navigation in buildings with numerous levels and rooms.
机译:人类通常在多层建筑等3D环境中进行操作,但是令人惊讶的是,缺乏研究来研究这些空间在大脑中的表现方式。在这里,我们让参与者学习了虚拟多层画廊建筑中绘画的位置,然后使用行为测试和fMRI重复抑制分析来研究此3D多隔间空间的表示方式,以及在编码垂直和水平信息时是否存在偏差。我们发现房间内以自我为中心的空间判断和到同一房间的行为启动效应的响应时间更快,这为空间的空间表示提供了证据。在神经水平上,我们观察到3D空间信息的分层编码,其中左前海马代表房间内的局部信息,而脾后皮质,海马旁皮质和后海马代表更广泛的建筑物内的房间信息。值得注意的是,我们的行为和神经发现均表明,垂直和水平位置信息的编码方式相似,这表明即使在多隔室环境中,3D空间的各向同性表示也是如此。这些发现提供了关于人脑如何支持具有多个级别和房间的建筑物中的空间记忆和导航的急需信息。

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