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编码、存储和反应准备——工作记忆中刺激和动作表征的独特 EEG 相关物。

Encoding, storage, and response preparation-Distinct EEG correlates of stimulus and action representations in working memory.

机构信息

IfADo-Leibniz Research Centre for Working Environment and Human Factors, Dortmund, Germany.

Experimental Psychology, Department of Psychology, Johannes Gutenberg-University Mainz, Mainz, Germany.

出版信息

Psychophysiology. 2020 Jun;57(6):e13577. doi: 10.1111/psyp.13577. Epub 2020 Apr 7.

Abstract

Working memory (WM) allows for the active storage of stimulus- and higher level representations, such as action plans. This electroencephalography (EEG) study investigated the specific electrophysiological correlates dissociating action-related from stimulus-related representations in WM using three different experimental conditions based on the same stimulus material. In the experiment, a random sequence of single numbers (from 1 to 6) was presented and participants had to indicate whether the current number (N0 condition), the preceding number (N-1 condition), or the sum of the current and the preceding number (S-1 condition) was odd or even. Accordingly, participants had to store a stimulus representation in S-1 and an action representation in N-1 until the onset of the next stimulus. In the EEG, the storage of stimulus representations (S-1) was reflected by a fronto-central slow wave indicating the rehearsal of information that was required for the response in the following trial. In contrast, the storage of action representations (N-1) went along with a posterior positive slow wave, suggesting that the action plan was actively stored in WM until the presentation of the next stimulus. Crucially, preparing for the next response in N-1 was associated with increased contralateral mu/beta suppression, predicting the response time in the given trial. Our findings, thus, show that the WM processes for stimulus- and action representations can be clearly dissociated from each other with a distinct sequence of EEG correlates for encoding, storage, and response preparation.

摘要

工作记忆 (WM) 允许主动存储刺激和更高层次的表示,例如行动计划。这项脑电图 (EEG) 研究使用三种不同的基于相同刺激材料的实验条件,研究了在 WM 中分离与动作相关的表示和与刺激相关的表示的特定电生理相关性。在实验中,呈现一个随机的单个数字序列(从 1 到 6),参与者必须指出当前数字(N0 条件)、前一个数字(N-1 条件)或当前数字和前一个数字的和(S-1 条件)是奇数还是偶数。因此,参与者必须在 S-1 中存储刺激表示,在 N-1 中存储动作表示,直到下一个刺激开始。在 EEG 中,刺激表示的存储(S-1)反映在额中央慢波中,表明需要对下一个试验中的反应进行信息排练。相比之下,动作表示的存储(N-1)伴随着后正慢波,表明行动计划在 WM 中被主动存储,直到下一个刺激呈现。至关重要的是,在 N-1 中为下一个反应做准备与对侧 mu/beta 抑制的增加有关,这预测了给定试验中的反应时间。因此,我们的发现表明,刺激和动作表示的 WM 过程可以通过明确的 EEG 相关性序列清晰地区分开来,用于编码、存储和反应准备。

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