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抑制语义干扰需要调节阿尔法振荡。

Modulation of alpha oscillations is required for the suppression of semantic interference.

作者信息

Melnik Natalia, Mapelli Igor, Özkurt Tolga Esat

机构信息

Neurosignal Lab, Graduate School of Informatics, ODTÜ, Ankara, Turkey.

Neurosignal Lab, Graduate School of Informatics, ODTÜ, Ankara, Turkey.

出版信息

Neurobiol Learn Mem. 2017 Oct;144:11-18. doi: 10.1016/j.nlm.2017.05.007. Epub 2017 May 13.

DOI:10.1016/j.nlm.2017.05.007
PMID:28512011
Abstract

Recent findings on alpha band oscillations suggest their important role in memory consolidation and suppression of external distractors such as environmental noise. However, less attention was given to the phenomenon of internal distracting information being solely inherent to the stimuli content. Human memory may be prone to internal distractions caused by semantic relatedness between the meaning of words (e.g., atom, neutron, nucleus, etc.) to be encoded, i.e., semantic interference. Our study investigates the brain oscillatory dynamics behind the semantic interference phenomenon, whose possible outcome is known as false memories. In this direction, Deese-Roediger-McDermott word lists were appropriated for a modified Sternberg paradigm in auditory modality. Participants received semantically related and unrelated word lists via headphones while EEG data were acquired. Semantic interference triggered the false memory rates to be higher than those of other types of memory errors. Analysis demonstrated that the upper part of alpha band (∼10-12Hz) power decreases on parieto-occipital channels in the retention interval, prior to the probe item for semantically related condition. Our study elucidates the oscillatory mechanisms behind semantic interference by relying on alpha functional inhibition theory.

摘要

近期关于阿尔法波段振荡的研究结果表明,它们在记忆巩固以及抑制外部干扰因素(如环境噪音)方面发挥着重要作用。然而,人们较少关注内部干扰信息这一仅由刺激内容本身所固有的现象。人类记忆可能容易受到待编码单词含义之间语义相关性(例如,原子、中子、原子核等)所导致的内部干扰,即语义干扰。我们的研究调查了语义干扰现象背后的大脑振荡动力学,其可能的结果就是所谓的错误记忆。在这个方向上,迪ese-罗德尼格-麦克德莫特单词列表被应用于听觉模态下的改良斯特恩伯格范式。参与者通过耳机接收语义相关和不相关的单词列表,同时采集脑电图数据。语义干扰导致错误记忆率高于其他类型的记忆错误。分析表明,在语义相关条件下,在探测项目出现之前的保持间隔期间,顶枕通道上阿尔法波段上部(约10 - 12赫兹)的功率下降。我们的研究依靠阿尔法功能抑制理论阐明了语义干扰背后的振荡机制。

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