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眼跳抑制形状变化中的偏差。

A bias in saccadic suppression of shape change.

机构信息

Allgemeine und Biologische Psychologie, Philipps-Universität Marburg, Marburg, Germany.

Allgemeine und Biologische Psychologie, Philipps-Universität Marburg, Marburg, Germany; Center for Mind, Brain and Behaviour, Philipps-Universität Marburg, Marburg, Germany.

出版信息

Vision Res. 2021 Sep;186:112-123. doi: 10.1016/j.visres.2021.05.005. Epub 2021 Jun 2.

Abstract

Processing of visual information in the central (foveal) and peripheral visual field is vastly different. To achieve a homogeneous representation of the visual world across eye movements, the visual system needs to compensate for these differences. By introducing subtle changes between peripheral and foveal inputs across saccades, one can test this compensation. We morphed shapes between a triangle and a circle and presented two different change directions (circularity decrease or increase) at varying magnitudes across a saccade. In a change-discrimination task, observers disproportionally often reported percepts of circularity increase. To test the relationship with visual-field differences, we measured perception when shapes were exclusively presented either in the periphery (before a saccade), or in the fovea (after a saccade). We found that overall shapes were perceived as more circular before than after a saccade and the more pronounced this difference was for a participant, the smaller was their circularity-increase bias in the change-discrimination task. We propose that visual-field differences have a direct and an indirect influence on transsaccadic perception of shape change. The direct influence is based on the distinct appearance of shape in the central and peripheral visual field in a trial, causing an increase of the perceptual magnitude of circularity-decrease changes. The indirect influence is based on long-term build-up of transsaccadic expectations; if a change is opposite (circularity increase) to the expectation (circularity decrease), it should elicit a strong error signal facilitating change detection. We discuss the concept of transsaccadic expectations and theoretical implications for transsaccadic perception of other feature changes.

摘要

中央(中央凹)和周边视野的视觉信息处理有很大的不同。为了实现眼球运动中视觉世界的均匀表示,视觉系统需要补偿这些差异。通过在眼跳过程中在周边和中央凹输入之间引入细微的变化,可以测试这种补偿。我们在三角形和圆形之间进行形状变形,并在眼跳过程中以不同的幅度呈现两种不同的变化方向(圆形度减小或增大)。在变化辨别任务中,观察者不成比例地经常报告圆形度增加的知觉。为了测试与视野差异的关系,我们在形状仅在周边(在眼跳之前)或在中央凹(在眼跳之后)呈现的情况下测量了感知。我们发现,总体而言,形状在眼跳之前比之后被感知为更圆,并且对于参与者来说,这种差异越大,他们在变化辨别任务中的圆形增加偏差就越小。我们提出,视野差异对形状变化的眼跳间感知有直接和间接的影响。直接影响基于试验中形状在中央和周边视野中的独特外观,导致圆形度减小变化的感知幅度增加。间接影响基于眼跳间期望的长期建立;如果变化与期望(圆形度减小)相反(圆形度增加),则应该引发强烈的错误信号,有助于变化检测。我们讨论了眼跳间期望的概念以及对其他特征变化的眼跳间感知的理论意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdfe/8386820/e606156a491a/ga1.jpg

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