α振荡在时间注意中的作用

Simon Hanslmayr , Joachim Gross , Wolfgang Klimesch , Kimron L. Shapiro
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引用次数: 314

摘要

我们的大脑不会机械地处理传入的感官刺激。相反,当前的大脑状态会调节我们对刺激的反应。这种调节可以通过认知范式来研究,如注意眨眼,它揭示了相同的视觉目标刺激只有大约一半的试验被正确报告。大脑波动状态决定刺激检测这一观点的支持来自对大脑振荡的电生理学研究,这些研究表明,正在进行的振荡α活动(~ 10 Hz)的不同参数可以预测是否会感知到视觉刺激。本文回顾了刺激前α振荡活动在视觉感知中的作用的最新发现,并将这些结果纳入一个神经认知模型,该模型能够解释时间注意范式的各种发现,特别是注意眨眼。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of alpha oscillations in temporal attention

Our brain does not process incoming sensory stimuli mechanistically. Instead the current brain state modulates our reaction to a stimulus. This modulation can be investigated by cognitive paradigms such as the attentional blink, which reveal that identical visual target stimuli are correctly reported only on about half the trials. Support for the notion that the fluctuating state of the brain determines stimulus detection comes from electrophysiological investigations of brain oscillations, which have shown that different parameters of ongoing oscillatory alpha activity (~ 10 Hz) can predict whether a visual stimulus will be perceived or not. The present article reviews recent findings on the role of prestimulus alpha oscillatory activity for visual perception and incorporates these results into a neurocognitive model that is able to account for various findings in temporal attention paradigms, specifically the attentional blink.

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Brain Research Reviews
Brain Research Reviews 医学-神经科学
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