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记忆负荷对事件相关脑电图去同步化和同步化的影响。

The effects of memory load on event-related EEG desynchronization and synchronization.

作者信息

Krause C M, Sillanmäki L, Koivisto M, Saarela C, Häggqvist A, Laine M, Hämäläinen H

机构信息

Centre for Cognitive Neuroscience, University of Turku, 20014, Turku, Finland.

出版信息

Clin Neurophysiol. 2000 Nov;111(11):2071-8. doi: 10.1016/s1388-2457(00)00429-6.

Abstract

OBJECTIVES

To examine the effects of working memory load on the event-related desynchronization (ERD) and synchronization (ERS) of several narrow EEG frequency bands.

METHODS

ERD/ERS responses of the 4-6, 6-8, 8-10 and 10-12 Hz EEG frequency bands were studied in 24 normal subjects performing a visual sequential letter task (so-called n-back task) in which memory load was varied from 0 to 2.

RESULTS

In the 4-6 Hz theta frequency band, a long-lasting synchronization was observed in the anterior electrodes, especially after the presentation of targets. In the 6-8 and 8-10 Hz frequency bands, anterior ERS was elicited especially in the 2-back condition (highest memory load). In contrast to the responses of the 8-10 Hz frequency band, in the 10-12 Hz frequency band the 2-back experimental condition elicited the greatest ERD.

CONCLUSIONS

In the highest memory load (2-back) experimental condition the attentional capacities were most probably exceeded, resulting in 6-8 and 8-10 Hz ERS. This might reflect an inhibition of such brain areas (frontal cortices) no longer involved in task completion when alternative strategies are needed and utilized. These more 'cognitive' strategies were then reflected as an increase in 10-12 Hz ERD. Additionally, our results support the assumption that the simultaneously recorded ERD/ERS responses of different narrow EEG frequency bands differ and reflect distinct aspects of information processing.

摘要

目的

研究工作记忆负荷对多个窄带脑电图(EEG)频段事件相关去同步化(ERD)和同步化(ERS)的影响。

方法

对24名正常受试者进行视觉序列字母任务(即所谓的n-back任务,其中记忆负荷从0变化到2)时,研究4 - 6、6 - 8、8 - 10和10 - 12 Hz EEG频段的ERD/ERS反应。

结果

在4 - 6 Hz的θ频段,在前部电极观察到持续的同步化,尤其是在呈现目标之后。在6 - 8和8 - 10 Hz频段,特别是在2-back条件(最高记忆负荷)下引发了前部ERS。与8 - 10 Hz频段的反应相反,在10 - 12 Hz频段,2-back实验条件引发了最大的ERD。

结论

在最高记忆负荷(2-back)实验条件下,注意力容量很可能被超过,导致6 - 8和8 - 10 Hz的ERS。这可能反映了在需要并使用替代策略时,对不再参与任务完成的脑区(额叶皮质)的抑制。然后,这些更多的“认知”策略表现为10 - 12 Hz ERD的增加。此外,我们的结果支持这样的假设,即同时记录的不同窄带EEG频段的ERD/ERS反应不同,反映了信息处理的不同方面。

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