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Attentional modulations of somatosensory alpha, beta and gamma oscillations dissociate between anticipation and stimulus processing

机译:体感α,β和γ振荡的注意调制在预期和刺激过程之间分离

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What are the spectral signatures of somatosensory attention? Here we show that the answer to this question depends critically on the sensory context in which attention is deployed. We recorded magnetoencephalography (MEG) in humans and investigated tactile spatial attention in two different sensory contexts: in anticipation and during the processing of sustained tactile stimuli. We observe a double dissociation between these contexts and two key electrophysiological correlates of attention: in anticipation we primarily observe an attentional suppression of contralateral alpha and beta oscillations (8-12 and 15-30 Hz, respectively), whereas during stimulus processing we primarily observe an attentional amplification of contralateral gamma oscillations (55-75 Hz). This dissociation is well explained by the different neural states that occur prior and during the stimulus, and on which attention can exert its influence. In line with analogous observations in the visual modality, this suggests that the neural implementation of attention must be understood in relation to context and existing brain states. Consequently, different signatures of attention may contribute to perception in different contexts and, as our data reveals for the attentional modulation of alpha oscillations, these are not always required for attention to improve perception. At the same time, these data demonstrate that the attentional modulations of alpha and gamma oscillations (during, respectively, attentional orienting and attentional selection), are generalizable phenomena across the different sensory modalities.
机译:体感注意的光谱特征是什么?在这里,我们表明,该问题的答案主要取决于部署注意力的感觉环境。我们记录了人类的脑磁图(MEG),并在两种不同的感官环境中研究了触觉空间的注意力:预期和持续触觉刺激过程中。我们观察到这些情况与注意力的两个关键电生理相关因素之间的双重分离:在预期中,我们主要观察到对侧α和β振荡(分别为8-12和15-30 Hz)的注意抑制,而在刺激过程中,我们主要观察到注意对侧伽马振荡(55-75 Hz)的放大。这种解离可以通过在刺激之前和刺激期间发生的不同神经状态很好地解释,并且注意力可以对其施加影响。与视觉模态中的类似观察结果一致,这表明必须根据上下文和现有的大脑状态来理解注意力的神经实现。因此,注意的不同特征可能会在不同的上下文中促进感知,并且,正如我们的数据显示的,α振荡的注意调制一样,注意力并非总是需要这些来改善感知。同时,这些数据表明,α和γ振荡的注意调制(分别在注意定向和注意选择过程中)是跨越不同感觉方式的普遍现象。

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