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注视性漂移过程中运动感知的间断。

A discontinuity in motion perception during fixational drift.

作者信息

D'Angelo Josephine C, Tiruveedhula Pavan, Weber Raymond J, Arathorn David W, Otero-Millan Jorge, Roorda Austin

机构信息

Herbert Wertheim School of Optometry and Vision Science, University of California, Berkeley, Berkeley, CA USA.

Electrical and Computer Engineering Department, Montana State University, Bozeman, MT USA.

出版信息

bioRxiv. 2025 Jun 6:2025.06.02.657265. doi: 10.1101/2025.06.02.657265.

Abstract

The human visual system is tasked with perceiving stable and moving objects despite ever-present eye movements. Normally, our visual system performs this task exceptionally well; indeed, under conditions with frames of reference, our ability to detect relative motion exceeds the sampling limits of foveal cones. However, during fixational drift, if an image is programmed to move in a direction consistent with retinal slip, little to no motion is perceived, even if this motion is amplified. We asked: Would a stimulus moving in a direction consistent with retinal slip, but with a smaller magnitude across the retina, also appear relatively stable? We used an adaptive optics scanning light ophthalmoscope to deliver stimuli that moved contingent to retinal motion and measured subjects' perceived motion, under conditions with world-fixed background content. We also tested under conditions with background content closer and farther from the stimuli. We found a sharp discontinuity in motion perception. Stimuli moving in a direction consistent with retinal slip, no matter how small, appear to have relatively little to no motion; while, stimuli moving in the same direction as eye motion appear to be moving. Displacing background content to greater than 4° from the stimuli diminishes the effects of this phenomenon.

摘要

尽管眼球一直在运动,但人类视觉系统的任务是感知静止和移动的物体。通常情况下,我们的视觉系统能出色地完成这项任务;事实上,在有参考框架的条件下,我们检测相对运动的能力超过了中央凹视锥细胞的采样极限。然而,在注视性漂移期间,如果一幅图像被设定为朝着与视网膜滑动一致的方向移动,即使这种运动被放大,人们也几乎感觉不到或根本感觉不到运动。我们提出疑问:朝着与视网膜滑动一致的方向移动,但在整个视网膜上幅度较小的刺激,是否也会显得相对稳定?我们使用自适应光学扫描激光检眼镜来呈现随视网膜运动而移动的刺激,并在背景内容固定于世界的条件下测量受试者所感知到的运动。我们还在背景内容与刺激物距离较近和较远的条件下进行了测试。我们发现运动感知中存在明显的不连续性。朝着与视网膜滑动一致的方向移动的刺激,无论多么微小,似乎相对几乎没有运动;而朝着与眼球运动相同方向移动的刺激则似乎在移动。将背景内容从刺激物处移开超过4°会减弱这种现象的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a003/12157378/c756cdf31e9a/nihpp-2025.06.02.657265v1-f0006.jpg

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