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起联结作用的眼睛:特征整合不会被眼球跳动所破坏。

The eye that binds: Feature integration is not disrupted by saccadic eye movements.

作者信息

Reuther Josephine, Chakravarthi Ramakrishna, Hunt Amelia R

机构信息

University of Aberdeen, Aberdeen, UK.

出版信息

Atten Percept Psychophys. 2020 Feb;82(2):533-549. doi: 10.3758/s13414-019-01873-7.

Abstract

Feature integration theory proposes that visual features, such as shape and color, can only be combined into a unified object when spatial attention is directed to their location in retinotopic maps. Eye movements cause dramatic changes on our retinae, and are associated with obligatory shifts in spatial attention. In two experiments, we measured the prevalence of conjunction errors (that is, reporting an object as having an attribute that belonged to another object), for brief stimulus presentation before, during, and after a saccade. Planning and executing a saccade did not itself disrupt feature integration. Motion did disrupt feature integration, leading to an increase in conjunction errors. However, retinal motion of an equal extent but caused by saccadic eye movements is spared this disruption, and showed similar rates of conjunction errors as a condition with static stimuli presented to a static eye. The results suggest that extra-retinal signals are able to compensate for the motion caused by saccadic eye movements, thereby preserving the integrity of objects across saccades and preventing their features from mixing or mis-binding.

摘要

特征整合理论提出,诸如形状和颜色等视觉特征,只有当空间注意力指向视网膜拓扑图中它们的位置时,才能被组合成一个统一的物体。眼球运动在我们的视网膜上会引起显著变化,并且与空间注意力的强制性转移相关联。在两项实验中,我们测量了在扫视之前、期间和之后短暂呈现刺激时,联合错误(即报告一个物体具有属于另一个物体的属性)的发生率。计划和执行一次扫视本身并不会干扰特征整合。运动确实会干扰特征整合,导致联合错误增加。然而,由眼球跳动引起的同等程度的视网膜运动却不会受到这种干扰,并且与向静止眼睛呈现静态刺激的情况相比,联合错误率相似。结果表明,视网膜外信号能够补偿眼球跳动引起的运动,从而在扫视过程中保持物体的完整性,并防止它们的特征混合或错误绑定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7768/7246252/0c5cda20fdb3/13414_2019_1873_Fig1_HTML.jpg

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