Neville H J, Lawson D
Brain Res. 1987 Mar 10;405(2):253-67. doi: 10.1016/0006-8993(87)90295-2.
The effects of focussed attention to peripherally and centrally located visual stimuli were compared via an analysis of event-related brain potentials (ERPs) while subjects detected the direction of motion of a white square in a specified location. While attention to both peripheral and foveal stimuli produced enhancements of the early ERP components, the distribution over the scalp of the attention-related changes varied according to stimulus location. The attention-related increase in the amplitude of the N1 wave (157 ms) to the peripheral stimuli was greater over the parietal region of the hemisphere contralateral to the attended visual field. By contrast, the largest effects of foveally directed attention occurred over the occipital regions where the increase was bilaterally symmetrical. Additionally, the effects of attention on the ERPs were significantly larger for moving than for stationary stimuli, and this effect was greater for peripheral than for central attention. A long-latency positive displacement component (300-600 ms) was larger over the right than the left hemisphere during attention to the lateral visual fields, but was symmetrical in amplitude when central stimuli were attended. These results suggest that different pathways are modulated when attention is deployed to different regions of the visual fields. Further, they suggest that the special role of the right hemisphere in spatial attention may be limited to analysis of information in the visual periphery.
在受试者检测特定位置白色方块的运动方向时,通过分析事件相关脑电位(ERP)来比较集中注意力于外周和中央视觉刺激的效果。虽然对外周和中央凹刺激的注意力都会增强早期ERP成分,但与注意力相关的变化在头皮上的分布因刺激位置而异。与注意力相关的对视野对侧半球顶叶区域外周刺激的N1波(157毫秒)振幅增加更大。相比之下,中央凹定向注意力的最大影响出现在枕叶区域,且增加是双侧对称的。此外,注意力对ERP的影响在运动刺激上比对静止刺激显著更大,并且这种影响在外周注意力上比在中央注意力上更大。在关注外侧视野时,右侧半球上的一个长潜伏期正移位成分(300 - 600毫秒)比左侧半球更大,但在关注中央刺激时,其振幅是对称的。这些结果表明,当注意力部署到视野的不同区域时,不同的通路会受到调制。此外,它们表明右半球在空间注意力中的特殊作用可能仅限于对视觉外周信息的分析。