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CA3 retrieves coherent representations from degraded input: Direct evidence for CA3 pattern completion and dentate gyrus pattern separation

机译:CA3从降级的输入中检索相干表示:CA3模式完成和齿状回模式分离的直接证据

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摘要

Theories of associative memory suggest that successful memory storage and recall depend on a balance between two complementary processes: pattern separation (to minimize interference) and pattern completion (to retrieve a memory when presented with partial or degraded input cues). Putative attractor circuitry in the hippocampal CA3 region is thought to be the final arbiter between these two processes. Here we present direct, quantitative evidence that CA3 produces an output pattern closer to the originally stored representation than its degraded input patterns from the dentate gyrus (DG). We simultaneously recorded activity from CA3 and DG of behaving rats when local and global reference frames were placed in conflict. CA3 showed a coherent population response to the conflict (pattern completion), even though its DG inputs were severely disrupted (pattern separation). The results thus confirm the hallmark predictions of a longstanding computational model of hippocampal memory processing.
机译:关联内存的理论表明,成功的内存存储和调用取决于两个互补过程之间的平衡:模式分离(以最小化干扰)和模式完成(在出现部分或降级的输入提示时检索内存)。海马CA3区的推定吸引子电路被认为是这两个过程之间的最终仲裁者。在这里,我们提供了直接的定量证据,表明CA3产生的输出模式比齿状回(DG)的退化输入模式更接近原始存储的表示。当局部和全局参考框架发生冲突时,我们同时记录了行为大鼠的CA3和DG的活动。尽管CA3的DG输入受到严重破坏(模式分离),但CA3对冲突显示了一致的总体响应(模式完成)。因此,结果证实了海马记忆处理的长期计算模型的标志性预测。

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