Handy Todd C, Khoe Wayne
Department of Psychology, University of British Columbia, Vancouver, BC, Canada V6T 1Z4.
J Cogn Neurosci. 2005 Dec;17(12):1936-49. doi: 10.1162/089892905775008715.
Attention-related sensory gain control in human extrastriate cortex is believed to improve the acuity of visual perception. Yet given wide variance in the spatial resolution of vision across the retina, it remains unclear whether sensory gain operates homogenously between foveal and nonfoveal retinotopic locations. To address this issue, we used event-related potentials (ERPs) in a variant of the canonical spatial attention task. Participants were cued to expect targets at either fixation (foveal targets) or at a location several degrees above fixation (parafoveal targets). At both target locations, manual reaction times were shorter for cued relative to uncued targets, indicating that attention was consistently oriented to the cued location. Nevertheless, attention-related increases in sensory-evoked cortical activity were only observed at the parafoveal target location, as measured by the amplitude of the lateral occipital P1 ERP component. A second experiment replicated this data pattern using targets with lower stimulus contrast, indicating that the absence of a P1 effect for foveal targets could not be attributed to a saturated P1 response under higher-contrast stimulus conditions. When considered in light of retinogeniculate projections to cortex showing systematic changes in their physiological organization beginning within a degree of visual angle of the fovea, our findings support the proposal that the strategic functions of visual attention may vary with the retinotopic location involved.
人们认为,人类视皮层中与注意力相关的感觉增益控制可提高视觉感知的敏锐度。然而,鉴于视网膜上视觉空间分辨率存在很大差异,目前尚不清楚感觉增益在中央凹和非中央凹视网膜定位位置之间是否均匀运作。为了解决这个问题,我们在经典空间注意力任务的一个变体中使用了事件相关电位(ERP)。参与者被提示预期目标出现在注视点(中央凹目标)或注视点上方几度的位置(旁中央凹目标)。在这两个目标位置,与未提示目标相比,提示目标的手动反应时间更短,这表明注意力始终指向提示的位置。然而,通过枕叶外侧P1 ERP成分的幅度测量,仅在旁中央凹目标位置观察到与注意力相关的感觉诱发皮层活动增加。第二个实验使用较低刺激对比度的目标重复了这一数据模式,表明中央凹目标不存在P1效应不能归因于高对比度刺激条件下P1反应饱和。鉴于视网膜膝状体向皮层的投射在中央凹视角一度范围内开始显示其生理组织的系统变化,我们的研究结果支持这样的观点,即视觉注意力的策略功能可能因所涉及的视网膜定位位置而异。