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后扣带回皮层的空间周期性激活模式编码路径子空间和行进距离。

Spatially Periodic Activation Patterns of Retrosplenial Cortex Encode Route Sub-spaces and Distance Traveled.

机构信息

Department of Cognitive Science, University of California, San Diego, La Jolla, CA 92092, USA.

Department of Cognitive Science, University of California, San Diego, La Jolla, CA 92092, USA.

出版信息

Curr Biol. 2017 Jun 5;27(11):1551-1560.e4. doi: 10.1016/j.cub.2017.04.036. Epub 2017 May 18.

Abstract

Traversal of a complicated route is often facilitated by considering it as a set of related sub-spaces. Such compartmentalization processes could occur within retrosplenial cortex, a structure whose neurons simultaneously encode position within routes and other spatial coordinate systems. Here, retrosplenial cortex neurons were recorded as rats traversed a track having recurrent structure at multiple scales. Consistent with a major role in compartmentalization of complex routes, individual retrosplenial cortex (RSC) neurons exhibited periodic activation patterns that repeated across route segments having the same shape. Concurrently, a larger population of RSC neurons exhibited single-cycle periodicity over the full route, effectively defining a framework for encoding of sub-route positions relative to the whole. The same population simultaneously provides a novel metric for distance from each route position to all others. Together, the findings implicate retrosplenial cortex in the extraction of path sub-spaces, the encoding of their spatial relationships to each other, and path integration.

摘要

复杂路线的遍历通常可以通过将其视为一组相关的子空间来实现。这种分隔过程可能发生在后扣带皮层内,该结构的神经元同时编码路线内的位置和其他空间坐标系。在这里,当大鼠在具有多个尺度的重复结构的轨道上行驶时,记录了后扣带皮层神经元。与在复杂路线的分隔中起主要作用一致,单个后扣带皮层(RSC)神经元表现出重复出现的周期性激活模式,这些模式跨越具有相同形状的路线段。同时,更大的 RSC 神经元群体在整个路线上表现出单周期周期性,有效地定义了相对于整体的子路线位置编码框架。同一群体同时为从每个路线位置到所有其他位置的距离提供了一种新的度量。总之,这些发现表明后扣带皮层参与了路径子空间的提取、它们彼此之间的空间关系的编码以及路径整合。

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