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认知负荷对视觉注意空间部署的影响:通过双侧顶叶经颅直流电刺激测试半球间平衡的作用。

The Impact of Cognitive Load on the Spatial Deployment of Visual Attention: Testing the Role of Interhemispheric Balance With Biparietal Transcranial Direct Current Stimulation.

作者信息

Paladini Rebecca E, Wieland Fluri A M, Naert Lien, Bonato Mario, Mosimann Urs P, Nef Tobias, Müri René M, Nyffeler Thomas, Cazzoli Dario

机构信息

Gerontechnology and Rehabilitation Group, University of Bern, Bern, Switzerland.

Department of Psychology, University of Bern, Bern, Switzerland.

出版信息

Front Neurosci. 2020 Jan 10;13:1391. doi: 10.3389/fnins.2019.01391. eCollection 2019.

Abstract

In healthy individuals, increasing cognitive load induces an asymmetric deployment of visuospatial attention, which favors the right visual space. To date, the neural mechanisms of this left/right attentional asymmetry are poorly understood. The aim of the present study was thus to investigate whether a left/right asymmetry under high cognitive load is due to a shift in the interhemispheric balance between the left and right posterior parietal cortices (PPCs), favoring the left PPC. To this end, healthy participants completed a visuospatial attention detection task under low and high cognitive load, whilst undergoing biparietal transcranial direct current stimulation (tDCS). Three different tDCS conditions were applied in a within-subjects design: sham, anodal left/cathodal right, and cathodal left/anodal right stimulation. The results revealed a left/right attentional asymmetry under high cognitive load in the sham condition. This asymmetry disappeared during cathodal left/anodal right tDCS, yet was not influenced by anodal left/cathodal right tDCS. There were no left/right asymmetries under low cognitive load in any of the conditions. Overall, these findings demonstrate that attentional asymmetries under high cognitive load can be modulated in a polarity-specific fashion by means of tDCS. They thus support the assumption that load-related asymmetries in visuospatial attention are influenced by interhemispheric balance mechanisms between the left and right PPCs.

摘要

在健康个体中,认知负荷的增加会引发视觉空间注意力的不对称分配,这种分配更倾向于右侧视觉空间。迄今为止,这种左右注意力不对称的神经机制仍知之甚少。因此,本研究的目的是调查在高认知负荷下的左右不对称是否是由于左右后顶叶皮质(PPC)之间半球间平衡的转移,偏向于左侧PPC。为此,健康参与者在低认知负荷和高认知负荷下完成一项视觉空间注意力检测任务,同时接受双侧顶叶经颅直流电刺激(tDCS)。在一项被试内设计中应用了三种不同的tDCS条件:假刺激、左侧阳极/右侧阴极以及左侧阴极/右侧阳极刺激。结果显示,在假刺激条件下,高认知负荷时存在左右注意力不对称。在左侧阴极/右侧阳极tDCS期间,这种不对称消失了,但不受左侧阳极/右侧阴极tDCS的影响。在任何条件下,低认知负荷时均不存在左右不对称。总体而言,这些发现表明,高认知负荷下的注意力不对称可以通过tDCS以极性特异性方式进行调节。因此,它们支持了这样一种假设,即视觉空间注意力中与负荷相关的不对称受左右PPC之间半球间平衡机制的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc43/6965007/6a0bf22447f5/fnins-13-01391-g001.jpg

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