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Dynamic frontotemporal systems process space and time in working memory

机译:动态型初始系统过程流程空间和时间在工作存储器中

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摘要

How do we rapidly process incoming streams of information in working memory, a cognitive mechanism central to human behavior? Dominant views of working memory focus on the prefrontal cortex (PFC), but human hippocampal recordings provide a neurophysiological signature distinct from the PFC. Are these regions independent, or do they interact in the service of working memory? We addressed this core issue in behavior by recording directly from frontotemporal sites in humans performing a visuospatial working memory task that operationalizes the types of identity and spatiotemporal information we encounter every day. Theta band oscillations drove bidirectional interactions between the PFC and medial temporal lobe (MTL; including the hippocampus). MTL theta oscillations directed the PFC preferentially during the processing of spatiotemporal information, while PFC theta oscillations directed the MTL for all types of information being processed in working memory. These findings reveal an MTL theta mechanism for processing space and time and a domain-general PFC theta mechanism, providing evidence that rapid, dynamic MTL-PFC interactions underlie working memory for everyday experiences.
机译:我们如何快速处理工作记忆中的信息流,是人类行为的认知机制?工作记忆力专注于前额叶皮质(PFC)的主导视图,但人类海马记录提供了与PFC不同的神经生理学签名。这些区域是否独立,或者他们是否在工作记忆服务中互动?我们通过直接从人类的终端网站录制行为来解决这一核心问题,这些方法执行了探索工作记忆任务,该任务运营每天遇到的身份和时空信息的类型。 Theta带振荡驱动PFC和内侧颞叶(MTL;包括海马)之间的双向相互作用。 MTL Theta振荡在处理时空信息期间优先针对PFC,而PFC THETA振荡针对在工作存储器中处理的所有类型信息的MTL指向MTL。这些发现揭示了用于处理空间和时间的MTL THETA机制以及域一般PFCθ机制,提供了快速,动态MTL-PFC互动为日常经验的工作记忆的证据。

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