Department of Neuroscience, University of Rochester Medical Center, Rochester, NY 14627.
Department of Psychological and Brain Sciences, Boston University, Boston, MA 02215.
Proc Natl Acad Sci U S A. 2019 Mar 19;116(12):5811-5818. doi: 10.1073/pnas.1812222116. Epub 2019 Mar 1.
Humans use saccades to inspect objects of interest with the foveola, the small region of the retina with highest acuity. This process of visual exploration is normally studied over large scenes. However, in everyday tasks, the stimulus within the foveola is complex, and the need for visual exploration may extend to this smaller scale. We have previously shown that fixational eye movements, in particular microsaccades, play an important role in fine spatial vision. Here, we investigate whether task-driven visual exploration occurs during the fixation pauses in between large saccades. Observers judged the expression of faces covering approximately 1°, as if viewed from a distance of many meters. We use a custom system for accurately localizing the line of sight and continually track gaze position at high resolution. Our findings reveal that active spatial exploration, a process driven by the goals of the task, takes place at the foveal scale. The scanning strategies used at this scale resemble those used when examining larger scenes, with idiosyncrasies maintained across spatial scales. These findings suggest that the visual system possesses not only a coarser priority map of the extrafoveal space to guide saccades, but also a finer-grained priority map that is used to guide microsaccades once the region of interest is foveated.
人类通过扫视运动(saccades)用中央凹(foveola)来观察感兴趣的物体,中央凹是视网膜上具有最高分辨率的小区域。这种视觉探索过程通常在大场景中进行研究。然而,在日常任务中,中央凹内的刺激物是复杂的,视觉探索的需求可能扩展到更小的范围。我们之前已经表明,注视眼动(fixational eye movements),特别是微扫视(microsaccades),在精细的空间视觉中起着重要作用。在这里,我们研究了在大扫视之间的注视停顿期间是否会发生任务驱动的视觉探索。观察者判断大约 1°的面部表情,就好像从几米远的地方看一样。我们使用一个定制的系统来准确地定位视线,并以高分辨率连续跟踪注视位置。我们的发现表明,主动的空间探索,即由任务目标驱动的过程,发生在中央凹尺度上。在这个尺度上使用的扫描策略类似于在检查更大场景时使用的策略,并且在空间尺度上保持了特殊性。这些发现表明,视觉系统不仅具有一个更粗糙的、用于引导扫视的额外区域优先级图,而且还具有一个更精细的优先级图,该图用于在注视区域为中央凹时引导微扫视。