Ólafsdóttir H Freyja, Carpenter Francis, Barry Caswell
Research Department of Cell and Developmental Biology, UCL, Gower Street, London WC1E 6BT, UK.
Research Department of Cell and Developmental Biology, UCL, Gower Street, London WC1E 6BT, UK; Institute of Neurology, UCL, Queen Square, London WC1N 3BQ, UK.
Neuron. 2017 Nov 15;96(4):925-935.e6. doi: 10.1016/j.neuron.2017.09.035. Epub 2017 Oct 19.
Reactivation of hippocampal place cell sequences during behavioral immobility and rest has been linked with both memory consolidation and navigational planning. Yet it remains to be investigated whether these functions are temporally segregated, occurring during different behavioral states. During a self-paced spatial task, awake hippocampal replay occurring either immediately before movement toward a reward location or just after arrival at a reward location preferentially involved cells consistent with the current trajectory. In contrast, during periods of extended immobility, no such biases were evident. Notably, the occurrence of task-focused reactivations predicted the accuracy of subsequent spatial decisions. Additionally, during immobility, but not periods preceding or succeeding movement, grid cells in deep layers of the entorhinal cortex replayed coherently with the hippocampus. Thus, hippocampal reactivations dynamically and abruptly switch between operational modes in response to task demands, plausibly moving from a state favoring navigational planning to one geared toward memory consolidation.
行为静止和休息期间海马体位置细胞序列的重新激活与记忆巩固和导航规划均有关联。然而,这些功能是否在时间上是分离的,即在不同行为状态下发生,仍有待研究。在一个自定节奏的空间任务中,清醒时海马体回放要么在朝着奖励位置移动之前立即发生,要么在到达奖励位置之后立即发生,优先涉及与当前轨迹一致的细胞。相比之下,在长时间静止期间,没有明显的此类偏差。值得注意的是,以任务为重点的重新激活的发生预测了后续空间决策的准确性。此外,在静止期间,而非运动之前或之后的时间段,内嗅皮层深层的网格细胞与海马体进行了连贯回放。因此,海马体重新激活会根据任务需求在操作模式之间动态且突然地切换,可能从有利于导航规划的状态转变为倾向于记忆巩固的状态。