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Role of the Hippocampus in Distinct Memory Traces: Timing of Match and Mismatch Enhancement Revealed by Intracranial Recording

机译:海马在不同记忆痕迹中的作用:颅内记录揭示了匹配和错配增强的时机。

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摘要

A previous functional magnetic resonance imaging study reported evidence for parallel memory traces in the hippocampus: a controlled match signal detecting matches to internally-generated goal states and an automatic mismatch signal identifying unpredicted perceptual novelty. However, the timing information in this process is unknown. In the current study, facilitated by the high spatial and temporal resolution of intracranial recording from human patients, we confirmed that the left posterior hippocampus played an important role in the goal match enhancement effect, in which combinations of object identity and location were involved. We also found that this effect happened within 520 ms to 735 ms after the probe onset, ~150 ms later than the perceptual mismatch enhancement found bilaterally in both the anterior and posterior hippocampus. More specifically, the latency of the perceptual mismatch enhancement effect of the right hippocampus was positively correlated with the performance accuracy. These results suggested that the hippocampus is crucial in working memory if features binding with location are involved in the task and the goal match enhancement effect happens after perceptual mismatch enhancement, implying the dissociation of different components of working memory at the hippocampus. Moreover, single trial decoding results suggested that the intracranial field potential response in the right hippocampus can classify the match or switch task. This is consistent with the findings that the right hippocampal activity observed during the simulation of the future events may reflect the encoding of the simulation into memory.
机译:先前的功能磁共振成像研究报告了海马中平行记忆痕迹的证据:受控匹配信号检测与内部生成的目标状态的匹配,而自动失配信号则识别出无法预测的感知新奇。但是,此过程中的时序信息未知。在当前的研究中,由于人类患者颅内记录的时空分辨率高,我们证实了左后海马体在目标匹配增强效果中起着重要作用,其中涉及对象身份和位置的组合。我们还发现,这种影响发生在探针发作后的520毫秒至735毫秒内,比海马前后两侧的双侧知觉失配增强晚了约150毫秒。更具体地,右海马的感知失配增强作用的潜伏期与性能准确性正相关。这些结果表明,如果任务中涉及到与位置绑定的特征,并且目标匹配增强效果在知觉失配增强后发生,则海马在工作记忆中至关重要,这意味着海马工作记忆的不同组成部分会分离。此外,单次试验解码结果表明,右海马区的颅内视野电位反应可以将匹配或转换任务分类。这与发现有关,在未来事件的模拟过程中观察到的正确的海马活动可能反映了模拟在记忆中的编码,这一发现是一致的。

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