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Activation and inhibition of posterior parietal cortex have bi-directional effects on spatial errors following interruptions

机译:顶叶后皮层的激活和抑制对中断后的空间误差具有双向影响

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摘要

Interruptions to ongoing mental activities are omnipresent in our modern digital world, but the brain networks involved in interrupted performance are not known, nor have the activation of those networks been modulated. Errors following interruptions reflect failures in spatial memory, whose maintenance is supported by a brain network including the right posterior parietal cortex (PPC). The present study therefore used bi-directional transcranial Direct Current Stimulation (tDCS) of right PPC to examine the neuromodulation of spatial errors following interruptions, as well as performance on another PPC-dependent task, mental rotation. Anodal stimulation significantly reduced the number of interruption-based errors and increased mental rotation accuracy whereas cathodal stimulation significantly increased errors and reduced mental rotation accuracy. The results provide evidence for a causal role of the PPC in the maintenance of spatial representations during interrupted task performance.
机译:在我们的现代数字世界中,对进行中的心理活动的干扰无所不在,但是尚不清楚参与中断表演的大脑网络,也没有调节这些网络的激活。中断后的错误反映了空间记忆的故障,其维护得到包括右后顶叶皮层(PPC)在内的大脑网络的支持。因此,本研究使用右PPC的双向经颅直流电刺激(tDCS)来检查中断后空间误差的神经调节,以及在另一项PPC依赖的任务-心理旋转中的表现。阳极刺激显着减少了基于中断的错误的数量并提高了心理旋转的准确性,而阴极刺激显着增加了错误并降低了心理旋转的准确性。结果提供了证据,证明了PPC在中断任务执行过程中维持空间表示形式中的因果作用。

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