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Lingering Cognitive States Shape Fundamental Mnemonic Abilities

机译:挥之不去的认知状态形状基础助记符

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摘要

Why are people sometimes able to recall associations in exquisite detail while at other times left frustrated by the deficiencies of memory? Although this apparent fickleness of memory has been extensively studied by investigating factors that build strong memory traces, researchers know less about whether memory success also depends on cognitive states that are in place when a cue is encountered. Motivating this possibility, neurocomputational models propose that the hippocampus's capacity to support associative recollection (pattern completion) is biased by persistent neurochemical states, which can be elicited by exposure to familiarity and novelty. We investigated these models' behavioral implications by assessing how recent familiarity influences different memory-retrieval processes. We found that recent familiarity selectively benefitted associative memory (Experiment 1) and that this effect decayed over seconds (Experiment 2), consistent with the timescale of hippocampal neuromodulation. Thus, we show that basic memory computations can be shaped by a subtle, biologically motivated manipulation.
机译:为什么人们有时能够记住精美细节的关联,而其他时候留下了记忆缺陷的沮丧?虽然通过调查构建强大的记忆迹线的因素,所谓的记忆表观性发布已经过广泛研究,但研究人员知道内存成功还取决于遇到提示时的认知状态也取决于认知状态。激发这种可能性,神经计算机模型提出了海马支持联想倒退的能力(模式完成)被持续的神经化学状态偏向,这可以通过暴露于熟悉性和新颖性而引发。我们通过评估最近影响不同的内存检索过程的熟悉程度来调查这些模型的行为含义。我们发现最近的熟悉性有选择性地受益的关联记忆(实验1),并且这种效果衰减超过几秒钟(实验2),与海马神经调节的时间尺寸一致。因此,我们表明基本的存储器计算可以通过微妙的生物动机的操纵来塑造。

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