University College London Institute of Cognitive Neuroscience and Wellcome Trust Centre for Neuroimaging, 12 Queen Square, London, WC1N3BG, United Kingdom.
J Neurophysiol. 2012 May;107(9):2342-51. doi: 10.1152/jn.00973.2011. Epub 2012 Feb 8.
Selective attention allows us to focus on particular sensory modalities and locations. Relatively little is known about how attention to a sensory modality may relate to selection of other features, such as spatial location, in terms of brain oscillations, although it has been proposed that low-frequency modulation (α- and β-bands) may be key. Here, we investigated how attention to space (left or right) and attention to modality (vision or touch) affect ongoing low-frequency oscillatory brain activity over human sensory cortex. Magnetoencephalography was recorded while participants performed a visual or tactile task. In different blocks, touch or vision was task-relevant, whereas spatial attention was cued to the left or right on each trial. Attending to one or other modality suppressed α-oscillations over the corresponding sensory cortex. Spatial attention led to reduced α-oscillations over both sensorimotor and occipital cortex contralateral to the attended location in the cue-target interval, when either modality was task-relevant. Even modality-selective sensors also showed spatial-attention effects for both modalities. The visual and sensorimotor results were generally highly convergent, yet, although attention effects in occipital cortex were dominant in the α-band, in sensorimotor cortex, these were also clearly present in the β-band. These results extend previous findings that spatial attention can operate in a multimodal fashion and indicate that attention to space and modality both rely on similar mechanisms that modulate low-frequency oscillations.
选择性注意使我们能够专注于特定的感觉模式和位置。尽管有人提出,低频调制(α和β频段)可能是关键,但对于注意一种感觉模式如何与其他特征(如空间位置)的选择相关,大脑振荡的了解相对较少。在这里,我们研究了注意空间(左或右)和注意模式(视觉或触觉)如何影响人类感觉皮层上的低频振荡脑活动。当参与者执行视觉或触觉任务时,记录了脑磁图。在不同的块中,触摸或视觉是任务相关的,而在每次试验中,空间注意力都被提示到左侧或右侧。注意一种或另一种模式会抑制相应感觉皮层上的α 振荡。当任一模式为任务相关时,空间注意力会导致在提示-目标间隔期间,与被注意位置相对侧的感觉运动和枕叶皮层上的α 振荡减少。即使是模态选择性传感器,对于两种模态也表现出空间注意效应。视觉和感觉运动的结果通常高度一致,但尽管枕叶皮层中的注意效应在α 频段占主导地位,但在感觉运动皮层中,β 频段也明显存在这些效应。这些结果扩展了先前的发现,即空间注意力可以以多模态方式运作,并表明空间和模式注意都依赖于类似的调制低频振荡的机制。