首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Theta and alpha oscillations during working-memory maintenance predict successful long-term memory encoding.
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Theta and alpha oscillations during working-memory maintenance predict successful long-term memory encoding.

机译:工作内存维护期间的theta和alpha振荡预测成功的长期内存编码。

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摘要

To date, much is known about the neural mechanisms underlying working-memory (WM) maintenance and long-term-memory (LTM) encoding. However, these topics have typically been examined in isolation, and little is known about how these processes might interact. Here, we investigated whether EEG oscillations arising specifically during the delay of a delayed matching-to-sample task reflect successful LTM encoding. Given previous findings of increased alpha and theta power with increasing WM load, together with the assumption that successful memory encoding involves processes that are similar to those that are invoked by increasing WM load, alpha and theta power should be higher for subsequently remembered stimuli. Consistent with this assumption, we found stronger alpha power for subsequently remembered stimuli over occipital-to-parietal scalp sites. Furthermore, stronger theta power was found for subsequently remembered stimuli over parietal-to-central electrodes. These results support the idea that alpha and theta oscillations modulate successful LTM encoding.
机译:迄今为止,关于工作记忆(WM)维护和长期记忆(LTM)编码的神经机制的知识已为人们所知。但是,这些主题通常是单独进行检查的,对这些过程如何相互作用的了解很少。在这里,我们调查了特定于延迟的匹配样本任务延迟期间产生的EEG振荡是否反映了成功的LTM编码。鉴于先前发现随着WM负载增加而增加alpha和theta功率,并假设成功的内存编码所涉及的过程与通过增加WM负载调用的过程相似,因此对于随后记忆的刺激,alpha和theta功率应更高。与这个假设一致,我们发现随后记忆的对枕骨至顶皮头皮部位的刺激具有更强的阿尔法能力。此外,发现更强的theta功率可用于随后记住的顶壁到中央电极的刺激。这些结果支持这样的想法,即alpha和theta振荡会调制成功的LTM编码。

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