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Cathodal transcranial direct current stimulation over posterior parietal cortex enhances distinct aspects of visual working memory

机译:后顶叶皮层的阴极经颅直流电刺激增强了视觉工作记忆的独特方面

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摘要

In this study, we investigated the effects of tDCS over the posterior parietal cortex (PPC) during a visual working memory (WM) task, which probes different sources of response error underlying the precision of WM recall. In two separate experiments, we demonstrated that tDCS enhanced WM precision when applied bilaterally over the PPC, independent of electrode configuration. In a third experiment, we demonstrated with unilateral electrode configuration over the right PPC, that only cathodal tDCS enhanced WM precision and only when baseline performance was low. Looking at the effects on underlying sources of error, we found that cathodal stimulation enhanced the probability of correct target response across all participants by reducing feature-misbinding. Only for low-baseline performers, cathodal stimulation also reduced variability of recall. We conclude that cathodal- but not anodal tDCS can improve WM precision by preventing feature-misbinding and hereby enhancing attentional selection. For low-baseline performers, cathodal tDCS also protects the memory trace. Furthermore, stimulation over bilateral PPC is more potent than unilateral cathodal tDCS in enhancing general WM precision.
机译:在这项研究中,我们调查了视觉工作记忆(WM)任务期间tDCS对后顶叶皮层(PPC)的影响,该任务探查了WM召回精度背后的不同响应错误源。在两个单独的实验中,我们证明了tDCS双向应用在PPC上时,可提高WM精度,而与电极配置无关。在第三个实验中,我们用正确的PPC上的单侧电极配置证明,只有阴极tDCS可以提高WM精度,并且仅当基线性能较低时才可以。观察对潜在错误源的影响,我们发现,阴极刺激通过减少特征错配,提高了所有参与者正确目标反应的可能性。仅对于低基线表现者,阴极刺激还可以降低召回率的变异性。我们得出的结论是,阴极tDCS而非阳极tDCS可以通过防止特征错配并从而增强注意力选择来提高WM精度。对于低基线性能者,阴极tDCS还可以保护内存跟踪。此外,对双侧PPC的刺激在增强一般WM精度方面比单侧阴极tDCS更有效。

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