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Methodological Caveats in the Detection of Coordinated Replay between Place Cells and Grid Cells

机译:在位置单元格和网格单元格之间协调播放的检测中的方法学警告

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摘要

At rest, hippocampal “place cells,” neurons with receptive fields corresponding to specific spatial locations, reactivate in a manner that reflects recently traveled trajectories. These “replay” events have been proposed as a mechanism underlying memory consolidation, or the transfer of a memory representation from the hippocampus to neocortical regions associated with the original sensory experience. Accordingly, it has been hypothesized that hippocampal replay of a particular experience should be accompanied by simultaneous reactivation of corresponding representations in the neocortex and in the entorhinal cortex, the primary interface between the hippocampus and the neocortex. Recent studies have reported that coordinated replay may occur between hippocampal place cells and medial entorhinal cortex grid cells, cells with multiple spatial receptive fields. Assessing replay in grid cells is problematic, however, as the cells exhibit regularly spaced spatial receptive fields in all environments and, therefore, coordinated replay between place cells and grid cells may be detected by chance. In the present report, we adapted analytical approaches utilized in recent studies of grid cell and place cell replay to determine the extent to which coordinated replay is spuriously detected between grid cells and place cells recorded from separate rats. For a subset of the employed analytical methods, coordinated replay was detected spuriously in a significant proportion of cases in which place cell replay events were randomly matched with grid cell firing epochs of equal duration. More rigorous replay evaluation procedures and minimum spike count requirements greatly reduced the amount of spurious findings. These results provide insights into aspects of place cell and grid cell activity during rest that contribute to false detection of coordinated replay. The results further emphasize the need for careful controls and rigorous methods when testing the hypothesis that place cells and grid cells exhibit coordinated replay.
机译:静止时,海马“位置细胞”(即具有对应于特定空间位置的感受野的神经元)以反映最近行进轨迹的方式重新激活。这些“重播”事件被认为是记忆巩固或将记忆表征从海马转移到与原始感觉体验相关的新皮质区域的机制。因此,已经假设特定经历的海马重放应伴随着新皮层和内嗅皮层(海马和新皮层之间的主要界面)中相应表示的同时重新激活。最近的研究报告称,在具有多个空间感受野的细胞中,海马体细胞与内侧内嗅皮层网格细胞之间可能发生协调的重播。然而,评估网格单元中的重放是有问题的,因为这些单元在所有环境中均显示出规则间隔的空间接收场,因此,可能会偶然检测到放置单元和网格单元之间的协调重放。在本报告中,我们采用了在网格细胞和位置细胞重放的最新研究中使用的分析方法,以确定在网格细胞和从单独的大鼠记录的位置细胞之间虚假检测到协调重放的程度。对于所采用分析方法的子集,在相当多的情况下,伪随机检测到协调重放,其中,位置单元重放事件与等长持续时间的网格单元触发时期随机匹配。更严格的重播评估程序和最少的尖峰计数要求大大减少了伪造发现的数量。这些结果提供了对休息期间位置单元格和网格单元活动方面的见解,这些方面有助于错误检测协调重放。结果进一步强调了在测试放置单元格和网格单元格显示协调回放的假设时,需要谨慎的控制和严格的方法。

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