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多巴胺刺激促进工作记忆,并对前额叶低频θ振荡产生差异影响。

Dopaminergic stimulation facilitates working memory and differentially affects prefrontal low theta oscillations.

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Martinistrasse 52, 20246 Hamburg, Germany.

Cognition and Brain Plasticity Group, University of Barcelona, Bellvitge Hospital, C/Feixa Llarga S/N, 08907 L'Hospitalet de Llobregat, Spain.

出版信息

Neuroimage. 2014 Jul 1;94:185-192. doi: 10.1016/j.neuroimage.2014.03.011. Epub 2014 Mar 15.

Abstract

We used electroencephalography (EEG) together with psychopharmacological stimulation to investigate the role of dopamine in neural oscillations during working memory (WM). Following a within-subjects design, healthy humans either received the dopamine precursor L-Dopa (150 mg) or a placebo before they performed a Sternberg WM paradigm. Here, sequences of sample images had to be memorized for a delay of 5 s in three different load conditions (two, four or six items). On the next day, long-term memory (LTM) for the images was tested. Behaviorally, L-Dopa improved WM and LTM performance as a function of WM load. More precisely, there was a specific drug effect in the four-load condition with faster reaction times to the probe in the WM task and higher corrected hit-rates in the LTM task. During the maintenance period, there was a linear and quadratic effect of WM load on power in the high theta (5-8 Hz) and alpha (9-14 Hz) frequency range at frontal sensors. Importantly, a drug by load interaction--mimicking the behavioral results--was found only in low theta power (2-4 Hz). As such, our results indicate a specific link between prefrontal low theta oscillations, dopaminergic neuromodulation during WM and subsequent LTM performance.

摘要

我们使用脑电图(EEG)和精神药理学刺激来研究多巴胺在工作记忆(WM)期间神经振荡中的作用。采用被试内设计,健康人在进行 Sternberg WM 范式之前接受多巴胺前体 L-Dopa(150mg)或安慰剂。在此,必须在三个不同的负荷条件(两个、四个或六个项目)下记住样本图像序列 5 秒的延迟。第二天,测试了图像的长期记忆(LTM)。行为上,L-Dopa 改善了 WM 和 LTM 的表现,与 WM 负荷有关。更确切地说,在四负荷条件下存在特定的药物效应,WM 任务中的探针反应时间更快,LTM 任务中的校正击中率更高。在维持期间,额叶传感器的高 theta(5-8Hz)和 alpha(9-14Hz)频带的功率与 WM 负荷呈线性和二次效应。重要的是,仅在低 theta 功率(2-4Hz)中发现了药物与负荷的相互作用——模拟了行为结果。因此,我们的结果表明,前额叶低 theta 振荡、WM 期间的多巴胺能神经调制与随后的 LTM 表现之间存在特定联系。

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