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The effects of tDCS upon sustained visual attention are dependent on cognitive load

机译:tDCS对持续视觉注意力的影响取决于认知负荷

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Transcranial Direct Current Stimulation (tDCS) modulates the excitability of neuronal responses and consequently can affect performance on a variety of cognitive tasks. However, the interaction between cognitive load and the effects of tDCS is currently not well-understood. We recorded the performance accuracy of participants on a bilateral multiple object tracking task while undergoing bilateral stimulation assumed to enhance (anodal) and decrease (cathodal) neuronal excitability. Stimulation was applied to the posterior parietal cortex (PPC), a region inferred to be at the centre of an attentional tracking network that shows load-dependent activation. 34 participants underwent three separate stimulation conditions across three days. Each subject received (1) left cathodal / right anodal PPC tDCS, (2) left anodal / right cathodal PPC tDCS, and (3) sham tDCS. The number of targets-to-be-tracked was also manipulated, giving a low (one target per visual field), medium (two targets per visual field) or high (three targets per visual field) tracking load condition. It was found that tracking performance at high attentional loads was significantly reduced in both stimulation conditions relative to sham, and this was apparent in both visual fields, regardless of the direction of polarity. upon the brain's hemispheres. We interpret this as an interaction between cognitive load and tDCS, and suggest that tDCS may degrade attentional performance when cognitive networks become overtaxed and unable to compensate as a result. Systematically varying cognitive load may therefore be a fruitful direction to elucidate the effects of tDCS upon cognitive functions. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:经颅直流电刺激(tDCS)调节神经元反应的兴奋性,因此可以影响各种认知任务的表现。但是,认知负荷与tDCS的影响之间的相互作用目前尚不清楚。我们记录了参与者在进行双边刺激以增强(阳极)和减少(阴极)神经元兴奋性的同时进行双边刺激时,在双边多目标跟踪任务上的参与者的表现准确性。对顶叶后皮质(PPC)进行刺激,该区域被推断为位于注意力跟踪网络中心的区域,该区域显示了负荷依赖性激活。 34名参与者在三天内经历了三种单独的刺激条件。每个受试者接受(1)左阴极/右阳极PPC tDCS,(2)左阳极/右阴极PPC tDCS,以及(3)假tDCS。还对要跟踪的目标的数量进行了控制,从而给出了低(每个视野一个目标),中等(每个视野两个目标)或高(每个视野三个目标)跟踪负载情况。已经发现,在高注意力负荷下的跟踪性能在两种刺激条件下均相对于假刺激显着降低,并且这在两个视野中都是显而易见的,而与极性的方向无关。在大脑的半球上。我们将其解释为认知负荷和tDCS之间的相互作用,并建议tDCS可能会在认知网络变得超负荷且因此无法补偿时降低注意力表现。因此,系统地改变认知负荷可能是阐明tDCS对认知功能的影响的富有成果的方向。 (C)2015作者。由Elsevier Ltd.发布

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