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Retrieval Attempts Transiently Interfere with Concurrent Encoding of Episodic Memories But Not Vice Versa

机译:检索尝试暂时干扰情节性记忆的并发编码但不会反之

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摘要

In the rodent hippocampus, different phases of each theta activity cycle may be devoted to encoding and retrieval processes. These cycles of ∼3–8 Hz would allow equal processing time for each state and also provide temporal segregation to minimize their mutual interference. We show here that, by controlling the presentation asynchrony between verbal encoding and retrieval cues, theta-resolution (<100 ms) interference-free shifts between functional states are not expressed in hippocampally dependent, human “episodic” memory. Instead, retrieval attempts selectively and transiently interfere, for ∼450 ms, with the encoding of ongoing experiences. Analyses of scalp event-related potentials confirmed that the functional state of the brain during retrieval is largely unperturbed by concurrent encoding and also suggested that encoding impairments may last until a neocortical phase of retrieval can begin. The findings reveal the dynamic properties of interdependent encoding and retrieval functions that contribute to episodic memory in vivo and, moreover, show that, in humans, this form of memory does not operate with either the equality, or the rapidity, intrinsic to the theta model of rodent hippocampal function.
机译:在啮齿类动物海马中,每个θ活动周期的不同阶段可专门用于编码和检索过程。大约3–8 Hz的这些周期将为每种状态留出相等的处理时间,并且还提供时间隔离,以最大程度地减少它们之间的相互干扰。我们在这里表明,通过控制口头编码和检索提示之间的呈现异步,功能状态之间的theta分辨率(<100毫秒)无干扰转换不会在海马相关的人类“发作”记忆中表达。取而代之的是,检索尝试有选择地且短暂地干扰了大约450毫秒,干扰了正在进行的体验。对头皮事件相关电位的分析证实,在并发编码时,大脑在检索过程中的功能状态基本上不受干扰,并且还表明,编码障碍可能会持续到检索的新皮层阶段开始。这些发现揭示了相互依赖的编码和检索功能的动态特性,这些特性有助于体内的情节记忆,而且还表明,在人类中,这种形式的记忆既不能以theta模型固有的均等性或快速性进行操作啮齿动物海马功能

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