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听觉空间注意时 alpha 功率的地形特异性。

Topographic specificity of alpha power during auditory spatial attention.

机构信息

Department of Biomedical Engineering, Boston University, Boston, MA, 02215, USA.

Department of Communication Sciences and Disorders, University of Iowa, Iowa City, IA, 52242, USA.

出版信息

Neuroimage. 2020 Feb 15;207:116360. doi: 10.1016/j.neuroimage.2019.116360. Epub 2019 Nov 21.

Abstract

Visual and somatosensory spatial attention both induce parietal alpha (8-14 ​Hz) oscillations whose topographical distribution depends on the direction of spatial attentional focus. In the auditory domain, contrasts of parietal alpha power for leftward and rightward attention reveal qualitatively similar lateralization; however, it is not clear whether alpha lateralization changes monotonically with the direction of auditory attention as it does for visual spatial attention. In addition, most previous studies of alpha oscillation did not consider individual differences in alpha frequency, but simply analyzed power in a fixed spectral band. Here, we recorded electroencephalography in human subjects when they directed attention to one of five azimuthal locations. After a cue indicating the direction of an upcoming target sequence of spoken syllables (yet before the target began), alpha power changed in a task-specific manner. Individual peak alpha frequencies differed consistently between central electrodes and parieto-occipital electrodes, suggesting multiple neural generators of task-related alpha. Parieto-occipital alpha increased over the hemisphere ipsilateral to attentional focus compared to the contralateral hemisphere, and changed systematically as the direction of attention shifted from far left to far right. These results showing that parietal alpha lateralization changes smoothly with the direction of auditory attention as in visual spatial attention provide further support to the growing evidence that the frontoparietal attention network is supramodal.

摘要

视觉和躯体感觉空间注意都诱导顶叶α(8-14 Hz)振荡,其拓扑分布取决于空间注意焦点的方向。在听觉领域,左、右注意的顶叶α功率对比显示出定性相似的侧化;然而,尚不清楚α侧化是否像视觉空间注意那样随着听觉注意的方向单调变化。此外,大多数先前的α振荡研究没有考虑α频率的个体差异,而只是在固定的频谱带中分析功率。在这里,当被试将注意力指向五个方位中的一个时,我们记录了人类被试的脑电图。在提示即将出现的口语音节目标序列的方向(但在目标开始之前)后,α功率以特定于任务的方式发生变化。个体峰α频率在中央电极和顶枕电极之间始终存在差异,表明与任务相关的α存在多个神经发生器。与对侧半球相比,顶枕叶α在注意力焦点同侧半球上增加,并且随着注意力从最左到最右的方向变化而系统地变化。这些结果表明,与视觉空间注意一样,顶叶α侧化随听觉注意的方向平滑变化,为越来越多的证据提供了进一步支持,即额顶叶注意网络是超模式的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd95/9883080/f052d00bdc93/nihms-1788282-f0001.jpg

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