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Phase-Coded Oscillatory Ordering Promotes the Separation of Closely Matched Representations to Optimize Perceptual Discrimination

机译:相位编码的振荡排序促进了紧密匹配表示的分离以优化感知区分

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摘要

Low-frequency oscillations are proposed to be involved in separating neuronal representations belonging to different items. Although item-specific neuronal activity was found to cluster on different oscillatory phases, the influence of this mechanism on perception is unknown. Here, we investigated the perceptual consequences of neuronal item separation through oscillatory clustering. In an electroencephalographic experiment, participants categorized sounds parametrically varying in pitch, relative to an arbitrary pitch boundary. Pre-stimulus theta and alpha phase biased near-boundary sound categorization to one category or the other. Phase also modulated whether evoked neuronal responses contributed stronger to the fit of the sound envelope of one or another category. Intriguingly, participants with stronger oscillatory clustering (phase strongly biasing sound categorization) in the theta, but not alpha, range had steeper perceptual psychometric slopes (sharper sound category discrimination). These results indicate that neuronal sorting by phase directly influences subsequent perception and has a positive impact on discrimination performance.
机译:提出了低频振荡参与分离属于不同项目的神经元表示。尽管发现特定项目的神经元活动聚集在不同的振荡阶段,但这种机制对知觉的影响尚不清楚。在这里,我们调查了通过振荡聚类的神经元项目分离的感官后果。在脑电图实验中,参与者将相对于任意音高边界参数变化的音高进行了分类。刺激前的theta和alpha相位将近边界声音归类为一个类别或另一个类别。相位还调节了诱发的神经元反应是否对一种或另一种声音包络的贴合性更强。有趣的是,在theta中具有较强的振荡聚类(相位强烈偏向声音分类)但不包括alpha范围的参与者具有较陡峭的感知心理测斜(较尖锐的声音类别辨别力)。这些结果表明,按阶段进行的神经元排序直接影响随后的感知,并对区分性能产生积极影响。

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