Department of Brain and Cognitive Sciences, University of Rochester, Rochester, NY, USA.
Program in Computational Neuroscience, University of Chicago, Chicago, IL, USA.
Curr Biol. 2021 Jun 21;31(12):2698-2703.e2. doi: 10.1016/j.cub.2021.03.105. Epub 2021 Apr 29.
Exogenous attention, a powerful adaptive tool that quickly and involuntarily orients processing resources to salient stimuli, has traditionally been studied in the lower-resolution parafoveal and peripheral visual field. It is not known whether and how it operates across the 1° central fovea where visual resolution peaks. Here we investigated the dynamics of exogenous attention in the foveola. To circumvent the challenges posed by fixational eye movements at this scale, we used high-precision eye-tracking and gaze-contingent display control for retinal stabilization. High-acuity stimuli were briefly presented foveally at varying delays following an exogenous cue. Attended and unattended locations were just a few arcminutes away from the preferred locus of fixation. Our results show that for short temporal delays, observers' ability to discriminate fine detail is enhanced at the cued location. This enhancement is highly localized and does not extend to the nearby locations only 16' away. On a longer timescale, instead, we report an inverse effect: paradoxically, acuity is sharper at the unattended locations, resembling the phenomenon of inhibition of return at much larger eccentricities. Although exogenous attention represents a mechanism for low-cost monitoring of the environment in the extrafoveal space, these findings show that, in the foveola, it transiently modulates vision of detail with a high degree of resolution. Together with inhibition of return, it may aid visual exploration of complex foveal stimuli..
外源性注意是一种强大的自适应工具,它可以快速且不由自主地将处理资源定向到显著刺激上,传统上在低分辨率的旁中心视野和周边视野中进行研究。目前尚不清楚它是否以及如何在视觉分辨率达到峰值的 1°中央中央凹处运作。在这里,我们研究了中央凹内的外源性注意的动态。为了避免在这个尺度上由注视眼动引起的挑战,我们使用了高精度眼动追踪和注视相关显示控制来实现视网膜稳定。高清晰度刺激在受到外源性提示后以不同的时间延迟短暂地呈现于中央凹。被注视和未被注视的位置距离注视的最佳位置只有几分钟的弧度远。我们的结果表明,对于短时间延迟,观察者在提示位置辨别精细细节的能力增强。这种增强是高度局部的,不会扩展到仅 16'远的附近位置。在更长的时间尺度上,我们报告了相反的效果:矛盾的是,在未被注视的位置上,视力更清晰,类似于在更大的离焦处出现的返回抑制现象。尽管外源性注意代表了在周边空间中低成本监测环境的机制,但这些发现表明,在中央凹内,它会暂时以高度分辨率调节细节的视觉。与返回抑制一起,它可能有助于对复杂的中央凹刺激进行视觉探索。