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扫视眼动过程中的视觉。

Vision During Saccadic Eye Movements.

机构信息

Department of Translational Research on New Technologies in Medicine and Surgery, University of Pisa, 56123 Pisa, Italy; email:

CNR Institute of Neuroscience, 56123 Pisa, Italy.

出版信息

Annu Rev Vis Sci. 2018 Sep 15;4:193-213. doi: 10.1146/annurev-vision-091517-034317.

Abstract

The perceptual consequences of eye movements are manifold: Each large saccade is accompanied by a drop of sensitivity to luminance-contrast, low-frequency stimuli, impacting both conscious vision and involuntary responses, including pupillary constrictions. They also produce transient distortions of space, time, and number, which cannot be attributed to the mere motion on the retinae. All these are signs that the visual system evokes active processes to predict and counteract the consequences of saccades. We propose that a key mechanism is the reorganization of spatiotemporal visual fields, which transiently increases the temporal and spatial uncertainty of visual representations just before and during saccades. On one hand, this accounts for the spatiotemporal distortions of visual perception; on the other hand, it implements a mechanism for fusing pre- and postsaccadic stimuli. This, together with the active suppression of motion signals, ensures the stability and continuity of our visual experience.

摘要

眼球运动的知觉后果是多方面的

每次大的扫视都会伴随着对亮度-对比度、低频刺激的敏感性下降,影响有意识的视觉和无意识的反应,包括瞳孔收缩。它们还会产生空间、时间和数量的短暂扭曲,这些不能仅仅归因于视网膜上的运动。所有这些都表明视觉系统会主动进行预测和抵消扫视的影响。我们提出,一个关键机制是时空视觉场的重新组织,它在扫视之前和期间暂时增加了视觉表示的时间和空间不确定性。一方面,这解释了视觉感知的时空扭曲;另一方面,它实现了融合预扫视和扫视后刺激的机制。这与主动抑制运动信号一起,确保了我们视觉体验的稳定性和连续性。

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