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刺激背外侧前额叶皮层可增强适应性认知控制:一项高清经颅直流电刺激研究。

Stimulation of Dorsolateral Prefrontal Cortex Enhances Adaptive Cognitive Control: A High-Definition Transcranial Direct Current Stimulation Study.

作者信息

Gbadeyan Oyetunde, McMahon Katie, Steinhauser Marco, Meinzer Marcus

机构信息

Centre for Clinical Research, The University of Queensland, Brisbane 4029, Australia.

Centre for Advanced Imaging, The University of Queensland, Brisbane 4072, Australia, and.

出版信息

J Neurosci. 2016 Dec 14;36(50):12530-12536. doi: 10.1523/JNEUROSCI.2450-16.2016.

Abstract

UNLABELLED

Conflict adaptation is a hallmark effect of adaptive cognitive control and refers to the adjustment of control to the level of previously experienced conflict. Conflict monitoring theory assumes that the dorsolateral prefrontal cortex (DLPFC) is causally involved in this adjustment. However, to date, evidence in humans is predominantly correlational, and heterogeneous with respect to the lateralization of control in the DLPFC. We used high-definition transcranial direct current stimulation (HD-tDCS), which allows for more focal current delivery than conventional tDCS, to clarify the causal involvement of the DLPFC in conflict adaptation. Specifically, we investigated the regional specificity and lateralization of potential beneficial stimulation effects on conflict adaptation during a visual flanker task. One hundred twenty healthy participants were assigned to four HD-tDCS conditions: left or right DLPFC or left or right primary motor cortex (M1). Each group underwent both active and sham HD-tDCS in crossover, double-blind designs. We obtained a sizeable conflict adaptation effect (measured as the modulation of the flanker effect as a function of previous response conflict) in all groups and conditions. However, this effect was larger under active HD-tDCS than under sham stimulation in both DLPFC groups. In contrast, active stimulation had no effect on conflict adaptation in the M1 groups. In sum, the present results indicate that the DLPFC plays a causal role in adaptive cognitive control, but that the involvement of DLPFC in control is not restricted to the left or right hemisphere. Moreover, our study confirms the potential of HD-tDCS to modulate cognition in a regionally specific manner.

SIGNIFICANCE STATEMENT

Conflict adaptation is a hallmark effect of adaptive cognitive control. While animal studies have suggested causal involvement of the DLPFC in this phenomenon, such evidence is currently lacking in humans. The present study used high-definition transcranial direct current stimulation (HD-tDCS) to demonstrate that the DLPFC is causally involved in conflict adaptation in humans. Our study confirms a central claim of conflict monitoring theory, which up to now has predominantly relied on correlational studies. Our results further indicate an equal involvement of the left and right DLPFC in adaptive control, whereas stimulation of a control region-the primary motor cortex-had no effect on adaptive control. The study thus confirms the potential of HD-tDCS to modulate cognition in a regionally specific manner.

摘要

未标注

冲突适应是适应性认知控制的一个标志性效应,指的是将控制调整到先前经历的冲突水平。冲突监测理论认为背外侧前额叶皮层(DLPFC)在这种调整中起因果作用。然而,迄今为止,人类研究中的证据主要是相关性的,并且在DLPFC控制的偏侧化方面存在异质性。我们使用了高清经颅直流电刺激(HD-tDCS),它比传统tDCS能实现更聚焦的电流传递,以阐明DLPFC在冲突适应中的因果作用。具体而言,我们在视觉侧翼任务中研究了对冲突适应潜在有益刺激效应的区域特异性和偏侧化。120名健康参与者被分配到四种HD-tDCS条件下:左侧或右侧DLPFC,或左侧或右侧初级运动皮层(M1)。每组在交叉、双盲设计中接受主动和假HD-tDCS。我们在所有组和条件下都获得了显著的冲突适应效应(以侧翼效应作为先前反应冲突函数的调制来衡量)。然而,在两个DLPFC组中,主动HD-tDCS下的这种效应比假刺激下更大。相比之下,主动刺激对M1组的冲突适应没有影响。总之,目前的结果表明DLPFC在适应性认知控制中起因果作用,但DLPFC在控制中的参与并不局限于左半球或右半球。此外,我们的研究证实了HD-tDCS以区域特异性方式调节认知的潜力。

意义声明

冲突适应是适应性认知控制的一个标志性效应。虽然动物研究表明DLPFC在这一现象中起因果作用,但目前人类研究缺乏此类证据。本研究使用高清经颅直流电刺激(HD-tDCS)证明DLPFC在人类冲突适应中起因果作用。我们的研究证实了冲突监测理论的一个核心主张,该理论迄今为止主要依赖相关性研究。我们的结果进一步表明左右DLPFC在适应性控制中同等参与,而对一个控制区域——初级运动皮层——的刺激对适应性控制没有影响。因此,该研究证实了HD-tDCS以区域特异性方式调节认知的潜力。

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