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Ripples Make Waves: Binding Structured Activity and Plasticity in Hippocampal Networks

机译:涟漪掀起波澜:海马网络中的结合结构活性和可塑性

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摘要

Establishing novel episodic memories and stable spatial representations depends on an exquisitely choreographed, multistage process involving the online encoding and offline consolidation of sensory information, a process that is largely dependent on the hippocampus. Each step is influenced by distinct neural network states that influence the pattern of activation across cellular assemblies. In recent years, the occurrence of hippocampal sharp wave ripple (SWR) oscillations has emerged as a potentially vital network phenomenon mediating the steps between encoding and consolidation, both at a cellular and network level by promoting the rapid replay and reactivation of recent activity patterns. Such events facilitate memory formation by optimising the conditions for synaptic plasticity to occur between contingent neural elements. In this paper, we explore the ways in which SWRs and other network events can bridge the gap between spatiomnemonic processing at cellular/synaptic and network levels in the hippocampus.
机译:建立新颖的情景记忆和稳定的空间表示形式,需要精心设计的多阶段过程,涉及感觉信息的在线编码和离线合并,该过程主要取决于海马体。每个步骤都受不同的神经网络状态影响,这些状态会影响跨细胞装配的激活模式。近年来,海马尖波波纹(SWR)振荡的出现已成为一种潜在的重要网络现象,通过促进近期活动模式的快速重播和重新激活,在细胞和网络水平上介导了编码和整合之间的步骤。通过优化条件性神经元之间发生突触可塑性的条件,此类事件有助于记忆形成。在本文中,我们探索了SWR和其他网络事件如何弥合海马区细胞/突触的空间记忆处理和网络水平之间的鸿沟。

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