Martinez Antígona, Ramanathan Dhakshin S, Foxe John J, Javitt Daniel C, Hillyard Steven A
Department of Neurosciences, University of California, San Diego, La Jolla, California 92093-0608, USA.
J Neurosci. 2007 Jul 25;27(30):7963-73. doi: 10.1523/JNEUROSCI.0031-07.2007.
Selective attention may be flexibly directed toward particular locations in the visual field (spatial attention) or to entire object configurations (object-based attention). A key question is whether spatial attention plays a direct role in the selection of objects, perhaps by spreading its facilitatory influence throughout the boundaries of an object. We studied the relationship between spatial and object-based attention in a design in which subjects attended to brief offsets of one corner of a real or illusory square form. Object-selective attention was indexed by differences in event-related potential (ERP) amplitudes and blood oxygen level-dependent (BOLD) activations to unattended corner offsets in conditions in which the objects were intact versus fragmented or absent. This design ensured that object-based attention effects were not an artifact of attention being guided by simple directional cues such as parallel lines, which may have occurred in previous studies. Both space-based and object-based attention were associated with enhanced negative ERPs (N1 component at 140-180 ms) that were colocalized with BOLD activations in lateral occipital cortex (LOC). These results provide physiological evidence that directing spatial attention to one part of an object (whether real or illusory) facilitates the processing of the entire object at the level of the LOC and thus contributes directly to object-based selective attention.
选择性注意可以灵活地指向视野中的特定位置(空间注意)或整个物体形态(基于物体的注意)。一个关键问题是空间注意是否在物体选择中发挥直接作用,或许是通过将其促进性影响扩展到物体的整个边界。我们在一项设计中研究了空间注意和基于物体的注意之间的关系,在该设计中,受试者关注真实或虚幻方形一个角的短暂偏移。通过在物体完整与破碎或不存在的条件下,对未被关注的角偏移的事件相关电位(ERP)振幅和血氧水平依赖(BOLD)激活的差异来索引基于物体的选择性注意。这种设计确保了基于物体的注意效应不是由简单方向线索(如平行线)引导注意所产生的假象,而这种假象可能在先前的研究中出现过。基于空间的注意和基于物体的注意都与增强的负向ERP(140 - 180毫秒的N1成分)相关,这些负向ERP与枕叶外侧皮质(LOC)中的BOLD激活共定位。这些结果提供了生理学证据,即把空间注意指向物体的一部分(无论是真实的还是虚幻的),在LOC水平上促进了对整个物体的加工,从而直接有助于基于物体的选择性注意。