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Rhythmic TMS over Parietal Cortex Links Distinct Brain Frequencies to Global versus Local Visual Processing

机译:顶叶皮层的节律性TMS将不同的大脑频率链接到整体视觉处理与局部视觉处理

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摘要

Neural networks underlying visual perception exhibit oscillations at different frequencies (e.g., [1-6]). But how these map onto distinct aspects of visual perception remains elusive. Recent electroencephalography data indicate that theta or beta frequencies at parietal sensors increase in amplitude when conscious perception is dominated by global or local features, respectively, of a reversible visual stimulus [6]. But this provides only correlative, noninterventional evidence. Here we show via transcranial magnetic stimulation (TMS) interventions that short rhythmic bursts of right-parietal TMS at theta or beta frequency can causally benefit processing of global or local levels, respectively, for hierarchical visual stimuli, especially in the context of salient incongruent distractors. This double dissociation between theta and beta TMS reveals distinct causal roles for particular frequencies in processing global versus local visual features.
机译:视觉感知的神经网络在不同的频率下会表现出振荡(例如[1-6])。但是,这些如何映射到视觉感知的不同方面仍然难以捉摸。最近的脑电图数据表明,当意识感知分别受可逆视觉刺激的整体或局部特征支配时,顶传感器的θ或β频率会增加幅度[6]。但这仅提供了相关的,非干预性的证据。在这里,我们通过经颅磁刺激(TMS)干预表明,在theta或beta频率下,短壁右心顶TMS的有节奏的搏动可以分别有益于整体或局部水平的分层视觉刺激的处理,尤其是在显着不相容的牵张器的情况下。 theta和beta TMS之间的这种双重解离揭示了特定频率在处理全局视觉特征与局部视觉特征中的独特因果作用。

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