Biomedical Engineering, Boston University, Boston, United States.
Psychological and Brain Sciences, Boston University, Boston, United States.
Elife. 2019 Nov 29;8:e51184. doi: 10.7554/eLife.51184.
Both visual and auditory spatial selective attention result in lateralized alpha (8-14 Hz) oscillatory power in parietal cortex: alpha increases in the hemisphere ipsilateral to attentional focus. Brain stimulation studies suggest a causal relationship between parietal alpha and suppression of the representation of contralateral visual space. However, there is no evidence that parietal alpha controls auditory spatial attention. Here, we performed high definition transcranial alternating current stimulation (HD-tACS) on human subjects performing an auditory task in which they directed attention based on either spatial or nonspatial features. Alpha (10 Hz) but not theta (6 Hz) HD-tACS of right parietal cortex interfered with attending left but not right auditory space. Parietal stimulation had no effect for nonspatial auditory attention. Moreover, performance in post-stimulation trials returned rapidly to baseline. These results demonstrate a causal, frequency-, hemispheric-, and task-specific effect of parietal alpha brain stimulation on top-down control of auditory spatial attention.
视觉和听觉空间选择性注意均导致顶叶皮层中侧化的 alpha(8-14 Hz)振荡功率:注意力焦点同侧的半球中的 alpha 增加。脑刺激研究表明,顶叶 alpha 与对侧视觉空间表示的抑制之间存在因果关系。然而,尚无证据表明顶叶 alpha 控制听觉空间注意。在这里,我们对执行听觉任务的人类受试者进行了高清晰度经颅交流电刺激(HD-tACS),在该任务中,他们根据空间或非空间特征来引导注意力。右顶叶皮层的 alpha(10 Hz)但不是 theta(6 Hz)HD-tACS 干扰了对左而不是右听觉空间的注意。对于非空间听觉注意力,顶叶刺激没有影响。此外,刺激后试验的表现迅速恢复到基线。这些结果表明,顶叶 alpha 脑刺激对听觉空间注意力的自上而下控制具有因果关系、频率特异性、半球特异性和任务特异性。