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Spatial representations of place cells in darkness are supported by path integration and border information

机译:路径整合和边界信息支持黑暗中位置单元的空间表示

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摘要

Effective spatial navigation is enabled by reliable reference cues that derive from sensory information from the external environment, as well as from internal sources such as the vestibular system. The integration of information from these sources enables dead reckoning in the form of path integration. Navigation in the dark is associated with the accumulation of errors in terms of perception of allocentric position and this may relate to error accumulation in path integration. We assessed this by recording from place cells in the dark under circumstances where spatial sensory cues were suppressed. Spatial information content, spatial coherence, place field size, and peak and infield firing rates decreased whereas sparsity increased following exploration in the dark compared to the light. Nonetheless it was observed that place field stability in darkness was sustained by border information in a subset of place cells. To examine the impact of encountering the environment’s border on navigation, we analyzed the trajectory and spiking data gathered during navigation in the dark. Our data suggest that although error accumulation in path integration drives place field drift in darkness, under circumstances where border contact is possible, this information is integrated to enable retention of spatial representations.
机译:有效的空间导航通过可靠的参考提示实现,这些参考提示来自外部环境以及内部资源(例如前庭系统)的感官信息。来自这些来源的信息的集成能够以路径集成的形式进行推算。黑暗中的导航与同心轴位置感知方面的错误累积相关联,这可能与路径集成中的错误累积相关。我们通过在空间感官信号受到抑制的情况下在黑暗中从位置细胞记录下来来评估这一点。与光相比,在黑暗中探索之后,空间信息内容,空间连贯性,场所场大小以及峰场和内场射击率降低,而稀疏度增加。尽管如此,据观察,在黑暗中的场所场稳定性是由一部分场所细胞中的边界信息维持的。为了检查遇到环境边界对导航的影响,我们分析了在黑暗中导航过程中收集的轨迹和峰值数据。我们的数据表明,尽管路径集成中的错误累积驱动了场漂移在黑暗中,但在可能发生边界接触的情况下,此信息被集成以保留空间表示。

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