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有和没有眼球跳动时外周形状感知的校准。

Calibration of peripheral perception of shape with and without saccadic eye movements.

作者信息

Paeye Céline, Collins Thérèse, Cavanagh Patrick, Herwig Arvid

机构信息

Laboratoire Psychologie de la Perception, UMR 8242, Paris Descartes University, Paris, France.

Laboratoire Vision Action Cognition, EA 7326, Institut de Psychologie, Paris Descartes University, 92774, Boulogne-Billancourt Cedex, France.

出版信息

Atten Percept Psychophys. 2018 Apr;80(3):723-737. doi: 10.3758/s13414-017-1478-3.

Abstract

The cortical representations of a visual object differ radically across saccades. Several studies claim that the visual system adapts the peripheral percept to better match the subsequent foveal view. Recently, Herwig, Weiß, and Schneider (2015, Annals of the New York Academy of Sciences, 1339(1), 97-105) found that the perception of shape demonstrates a saccade-dependent learning effect. Here, we ask whether this learning actually requires saccades. We replicated Herwig et al.'s (2015) study and introduced a fixation condition. In a learning phase, participants were exposed to objects whose shape systematically changed during a saccade, or during a displacement from peripheral to foveal vision (without a saccade). In a subsequent test, objects were perceived as less (more) curved if they previously changed from more circular (triangular) in the periphery to more triangular (circular) in the fovea. Importantly, this pattern was seen both with and without saccades. We then tested whether a variable delay between the presentations of the peripheral and foveal objects would affect their association-hypothetically weakening it at longer delays. Again, we found that shape judgments depended on the changes experienced during the learning phase and that they were similar in both the saccade and fixation conditions. Surprisingly, they were not affected by the delay between the peripheral and foveal presentations over the range we tested. These results suggest that a general associative process, independent of saccade execution, contributes to the perception of shape across viewpoints.

摘要

视觉对象的皮层表征在扫视过程中会发生根本性的变化。多项研究表明,视觉系统会使外周感知进行调整,以更好地匹配随后的中央凹视图。最近,赫维希、魏斯和施奈德(2015年,《纽约科学院学报》,1339(1),97 - 105)发现形状感知表现出一种依赖于扫视的学习效应。在此,我们探讨这种学习是否真的需要扫视。我们重复了赫维希等人(2015年)的研究,并引入了注视条件。在学习阶段,参与者会看到一些物体,这些物体的形状在扫视过程中,或者在从外周视觉向中央凹视觉的位移过程中(无扫视)会系统性地改变。在随后的测试中,如果物体之前在外周从更圆(三角形)变为在中央凹更三角形(圆形),那么它们会被感知为弯曲程度更低(更高)。重要的是,无论有无扫视,都出现了这种模式。然后我们测试了外周物体和中央凹物体呈现之间的可变延迟是否会影响它们之间的关联——假设在更长延迟下会削弱这种关联。同样,我们发现形状判断取决于学习阶段所经历的变化,并且在扫视和注视条件下是相似的。令人惊讶的是,在我们测试的范围内,它们不受外周和中央凹呈现之间延迟的影响。这些结果表明,一个独立于扫视执行的一般关联过程有助于跨视角的形状感知。

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