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阅读过程中双眼的协调。

Binocular coordination of the eyes during reading.

作者信息

Liversedge Simon P, Rayner Keith, White Sarah J, Findlay John M, McSorley Eugene

机构信息

Department of Psychology, University of Durham, Durham DH1 3LE, United Kingdom.

出版信息

Curr Biol. 2006 Sep 5;16(17):1726-9. doi: 10.1016/j.cub.2006.07.051.

Abstract

Saccadic eye movements and fixations are the behavioral means by which we visually sample text during reading. Human oculomotor control is governed by a complex neurophysiological system involving the brain stem, superior colliculus, and several cortical areas. A very widely held belief among researchers investigating primate vision is that the oculomotor system serves to orient the visual axes of both eyes to fixate the same target point in space. It is argued that such precise positioning of the eyes is necessary to place images on corresponding retinal locations, such that on each fixation a single, nondiplopic, visual representation is perceived. Vision works actively through a continual sampling process involving saccades and fixations. Here we report that during normal reading, the eyes do not always fixate the same letter within a word. We also demonstrate that saccadic targeting is yoked and based on a unified cyclopean percept of a whole word since it is unaffected if different word parts are delivered exclusively to each eye via a dichoptic presentation technique. These two findings together suggest that the visual signal from each eye is fused at a very early stage in the visual pathway, even when the fixation disparity is greater than one character (0.29 deg), and that saccade metrics for each eye are computed on the basis of that fused signal.

摘要

扫视眼动和注视是我们在阅读过程中对文本进行视觉采样的行为方式。人类的眼球运动控制由一个复杂的神经生理系统支配,该系统涉及脑干、上丘和几个皮质区域。在研究灵长类视觉的研究人员中,一个非常普遍的观点是,眼球运动系统用于使双眼的视轴定向,以固定空间中的同一个目标点。有人认为,眼睛的这种精确定位对于将图像放置在相应的视网膜位置是必要的,这样在每次注视时都能感知到单一的、无复视的视觉表征。视觉通过一个涉及扫视和注视的连续采样过程积极地发挥作用。在这里,我们报告在正常阅读过程中,眼睛并不总是注视单词内的同一个字母。我们还证明,扫视目标是关联的,并且基于对整个单词的统一独眼感知,因为如果通过双眼分视呈现技术将不同的单词部分分别传递给每只眼睛,扫视目标不会受到影响。这两个发现共同表明,即使注视差异大于一个字符(0.29度),来自每只眼睛的视觉信号在视觉通路的非常早期阶段就会融合,并且每只眼睛的扫视参数是基于该融合信号计算的。

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