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Lateralization in Alpha-Band Oscillations Predicts the Locus and Spatial Distribution of Attention

机译:Alpha波段振荡中的横向化可预测注意的位置和空间分布

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摘要

Attending to a task-relevant location changes how neural activity oscillates in the alpha band (8–13Hz) in posterior visual cortical areas. However, a clear understanding of the relationships between top-down attention, changes in alpha oscillations in visual cortex, and attention performance are still poorly understood. Here, we tested the degree to which the posterior alpha power tracked the locus of attention, the distribution of attention, and how well the topography of alpha could predict the locus of attention. We recorded magnetoencephalographic (MEG) data while subjects performed an attention demanding visual discrimination task that dissociated the direction of attention from the direction of a saccade to indicate choice. On some trials, an endogenous cue predicted the target’s location, while on others it contained no spatial information. When the target’s location was cued, alpha power decreased in sensors over occipital cortex contralateral to the attended visual field. When the cue did not predict the target’s location, alpha power again decreased in sensors over occipital cortex, but bilaterally, and increased in sensors over frontal cortex. Thus, the distribution and the topography of alpha reliably indicated the locus of covert attention. Together, these results suggest that alpha synchronization reflects changes in the excitability of populations of neurons whose receptive fields match the locus of attention. This is consistent with the hypothesis that alpha oscillations reflect the neural mechanisms by which top-down control of attention biases information processing and modulate the activity of neurons in visual cortex.
机译:参加与任务相关的位置会改变神经活动在后视觉皮层区域的α波段(8–13Hz)中的振荡方式。但是,对自上而下的注意力,视觉皮层中的α振动的变化以及注意力表现之间的关系的清晰理解仍然很少。在这里,我们测试了后方alpha幂跟踪注意力轨迹的程度,注意力分布以及alpha地形可以很好地预测注意力轨迹的程度。我们记录了脑磁图(MEG)数据,而受试者则执行了一项要求注意的视觉辨别任务,该任务将注意力的方向与扫视的方向分离开以表明选择。在某些试验中,内源性线索可预测目标的位置,而在另一些试验中,则不包含空间信息。当指示目标位置时,传感器对着与所观察到的视野相对的枕骨皮质的α功率降低。当提示无法预测目标的位置时,在枕骨上方的传感器中,alpha功率再次降低,但在双侧,额叶皮质中的传感器中的alpha功率再次增加。因此,阿尔法的分布和地形可靠地表明了秘密注意的场所。总之,这些结果表明,α同步反映了其感受野与注意力所在位置相匹配的神经元群体的兴奋性变化。这与以下假设一致:阿尔法振荡反映了神经机制,通过这种机制,注意力的自上而下控制会偏向信息处理并调节视觉皮层中神经元的活动。

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