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The relationship between the field-shifting phenomenon and representational coherence of place cells in CA1 and CA3 in a cue-altered environment

机译:提示环境下CA1和CA3中场迁移现象与位置细胞表征相干性的关系

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摘要

Subfields of the hippocampus display differential dynamics in processing a spatial environment, especially when changes are introduced to the environment. Specifically, when familiar cues in the environment are spatially rearranged, place cells in the CA3 subfield tend to rotate with a particular set of cues (e.g., proximal cues), maintaining a coherent spatial representation. Place cells in CA1, in contrast, display discordant behaviors (e.g., rotating with different sets of cues or remapping) in the same condition. In addition, on average, CA3 place cells shift their firing locations (measured by the center of mass, or COM) backward over time when the animal encounters the changed environment for the first time, but not after that first experience. However, CA1 displays an opposite pattern, in which place cells exhibit the backward COM-shift only from the second day of experience, but not on the first day. Here, we examined the relationship between the environment-representing behavior (i.e., rotation vs. remapping) and the COM-shift of place fields in CA1 and CA3. Both in CA1 and CA3, the backward (as well as forward) COM-shift phenomena occurred regardless of the rotating versus remapping of the place cell. The differential, daily time course of the onset/offset of backward COM-shift in the cue-altered environment in CA1 and CA3 (on day 1 in CA1 and from day 2 onward in CA3) stems from different population dynamics between the subfields. The results suggest that heterogeneous, complex plasticity mechanisms underlie the environment-representating behavior (i.e., rotate/remap) and the COM-shifting behavior of the place cell.
机译:在处理空间环境时,尤其是在将变化引入环境时,海马的子域显示出不同的动态。具体而言,当在环境中重新排列环境中熟悉的线索时,CA3子域中的放置单元倾向于随着一组特定的线索(例如,近端线索)旋转,从而保持一致的空间表示。相反,将单元格放置在CA1中会在相同条件下显示不一致的行为(例如,以不同的提示集旋转或重新映射)。此外,平均而言,当动物第一次遇到变化的环境时,CA3放置细胞随时间向后移动其发射位置(以质心或COM度量),但第一次经历后不会变化。但是,CA1显示了相反的模式,在该模式中,单元格仅从体验的第二天开始显示向后的COM偏移,而不是从第一天开始。在这里,我们检查了环境表示行为(即旋转与重新映射)之间的关系以及CA1和CA3中场所字段的COM偏移。无论在CA1和CA3中,都发生了向后(以及向前)的COM移位现象,而与放置单元的旋转与重新映射无关。在CA1和CA3的提示环境中(CA1的第1天和CA3的第2天起),向后COM偏移的开始/偏移的每日时间过程的差异是由子域之间的不同种群动态引起的。结果表明,异质,复杂的可塑性机制是环境代表行为(即旋转/重新映射)和位置单元的COM移位行为的基础。

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