Institute of Science and Technology Austria (IST Austria), Am Campus 1, A-3400 Klosterneuburg, Austria.
Science. 2017 Jan 13;355(6321):184-188. doi: 10.1126/science.aag2787.
The hippocampus is thought to initiate systems-wide mnemonic processes through the reactivation of previously acquired spatial and episodic memory traces, which can recruit the entorhinal cortex as a first stage of memory redistribution to other brain areas. Hippocampal reactivation occurs during sharp wave-ripples, in which synchronous network firing encodes sequences of places. We investigated the coordination of this replay by recording assembly activity simultaneously in the CA1 region of the hippocampus and superficial layers of the medial entorhinal cortex. We found that entorhinal cell assemblies can replay trajectories independently of the hippocampus and sharp wave-ripples. This suggests that the hippocampus is not the sole initiator of spatial and episodic memory trace reactivation. Memory systems involved in these processes may include nonhierarchical, parallel components.
海马体被认为通过重新激活先前获得的空间和情景记忆痕迹来启动全系统的记忆过程,这些痕迹可以招募内嗅皮层作为记忆重新分配到其他大脑区域的第一阶段。海马体的再激活发生在尖波-涟漪期间,其中同步网络发射编码了位置序列。我们通过同时在海马体 CA1 区域和内嗅皮层浅层记录组装活动来研究这种重放的协调。我们发现,内嗅细胞组装可以在不依赖海马体和尖波-涟漪的情况下重演轨迹。这表明海马体不是空间和情景记忆痕迹再激活的唯一启动者。参与这些过程的记忆系统可能包括非层次化的并行组件。