Śmigasiewicz Kamila, Weinrich Julius, Reinhardt Bianka, Verleger Rolf
Department of Neurology, University of Lübeck, Germany.
Department of Neurology, University of Lübeck, Germany.
Biol Psychol. 2014 May;99:47-59. doi: 10.1016/j.biopsycho.2014.02.008. Epub 2014 Feb 24.
When one of the two hemispheres directs visuospatial attention to some contralateral location, this may imply that inhibition is exerted on the other hemisphere. In the dual rapid serial visual presentation task, two targets (T1 and T2) occur among two different visual streams, rapidly presented left and right. We replaced the standard letter distractors in one stream by "easy symbols" (ESy; easily distinguished from targets), to facilitate T1 identification. If interhemispheric inhibition is deployed and released, this facilitation of one hemisphere's task should reduce its inhibitory effect on the other hemisphere, leading to improved T2 identification by the other hemisphere. This prediction was confirmed in three experiments. Furthermore, event-related EEG potentials did not only show a constant bias of allocated attention between ESy and standard streams, with letters evoking visual potentials earlier than ESy, but also short-term enlargement of this effect in the pair of distractors that followed T1. Taken together, these results support the notion of interhemispheric inhibition in visuospatial attention.
当两个半球中的一个将视觉空间注意力导向对侧的某个位置时,这可能意味着对另一个半球施加了抑制作用。在双重快速序列视觉呈现任务中,两个目标(T1和T2)出现在两个不同的视觉流中,快速地分别呈现在左侧和右侧。我们用“简单符号”(ESy;易于与目标区分)替换了其中一个视觉流中的标准字母干扰项,以促进T1的识别。如果半球间抑制被部署并解除,对一个半球任务的这种促进作用应该会降低其对另一个半球的抑制作用,从而导致另一个半球对T2的识别得到改善。这一预测在三个实验中得到了证实。此外,事件相关脑电图电位不仅显示出在ESy和标准视觉流之间分配注意力的持续偏差,字母比ESy更早诱发视觉电位,而且在跟随T1的一对干扰项中,这种效应会出现短期增强。综上所述,这些结果支持了视觉空间注意力中半球间抑制的观点。