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Durable memories and efficient neural coding through mnemonic training using the method of loci

机译:耐用的记忆和高效的神经编码通过使用基因座的方法来通过助记符训练

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摘要

Mnemonic techniques, such as the method of loci, can powerfully boost memory. We compared memory athletes ranked among the world’s top 50 in memory sports to mnemonics-na?ve controls. In a second study, participants completed a 6-week memory training, working memory training, or no intervention. Behaviorally, memory training enhanced durable, longer-lasting memories. Functional magnetic resonance imaging during encoding and recognition revealed task-based activation decreases in lateral prefrontal, as well as in parahippocampal and retrosplenial cortices in both memory athletes and participants after memory training, partly associated with better performance after 4 months. This was complemented by hippocampal-neocortical coupling during consolidation, which was stronger the more durable memories participants formed. Our findings advance knowledge on how mnemonic training boosts durable memory formation through decreased task-based activation and increased consolidation thereafter. This is in line with conceptual accounts of neural efficiency and highlights a complex interplay of neural processes critical for extraordinary memory.
机译:扬声器技术,例如基因座的方法,可以有力地提升内存。我们将记忆运动员与世界排名第50位的记忆运动员进行比较到记忆体育中的第50名,以助记符-NA?VE控制。在第二项研究中,参与者完成了6周的记忆培训,工作记忆训练或无干预。行为,记忆训练增强了持久,更长的记忆。编码和识别期间的功能磁共振成像显示出基于任务的激活,横向前额框形,以及在记忆运动员和参与者中的ParahipPocampal和Retrosplenial在内存训练后的逆血管皮质中,部分相关于4个月后的性能更好。这是通过在整合期间的海马 - 新皮质耦合互补,这更强,更耐用的回忆参与者。我们的研究结果推进了助记符训练如何通过减少基于任务的激活和此后增加的合并来提高耐用内存形成。这符合神经效率的概念概念,并突出显示针对非凡内存至关重要的神经过程的复杂相互作用。

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