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匀速运动物体的虚幻加速和减速现象源自自然运动检测算法。

Illusory speeding-up and slowing-down of objects moving at constant speed emerges from natural motion detection algorithms.

作者信息

Handojo Emmeline L, Durant Szonya, Zanker Johannes M, Meso Andrew Isaac

机构信息

Faculty of Life Sciences and Medicine, King's College London, London, UK.

Department of Neuroimaging, King's College London, London, UK.

出版信息

Proc Biol Sci. 2025 Apr;292(2044):20242219. doi: 10.1098/rspb.2024.2219. Epub 2025 Apr 2.

Abstract

The footsteps illusion is a perceptual illusion in which two bars moving at the same constant speed on a stripey background are seen as alternately accelerating and decelerating like footsteps. The cortical mechanisms that give rise to footsteps and similar illusions remain to be fully understood and may reveal important neural computations. Using an implementation of the biologically inspired correlational model of motion detection, the 2-Dimensional Motion Detector, this study had three aims. First, reproducing perceptual speed oscillations in model simulations. Second, mapping empirical reports of multiple illusion configurations onto model outputs. Third, inferring from the successful model, the perceptual role of multi-scale spatio-temporal channels. We developed a 2-Dimensional Motion Detector implementation adding a global (single value) frame-by-frame dynamic readout to quantify continuous and oscillating response components. We confirmed that an expected signature oscillatory motion response corresponded to the footsteps illusion, demonstrating that its amplitude varied according to empirically measured illusion strength. We showed that with a global readout, the inherent pattern and contrast dependence of correlation detectors is sufficient to reproduce the surprising perceptual illusion. This evidence suggests spacetime correlation may be a fundamental sensory computation across species, with complementary filtering and global pooling operations adapted for various complex phenomena.

摘要

脚步错觉是一种感知错觉,在有条纹的背景上,两条以相同恒定速度移动的条纹会被视为像脚步一样交替加速和减速。产生脚步错觉及类似错觉的皮层机制仍有待充分理解,它们可能揭示重要的神经计算过程。本研究使用受生物启发的运动检测相关模型——二维运动检测器的一个实现版本,有三个目标。第一,在模型模拟中重现感知速度振荡。第二,将多种错觉配置的实证报告映射到模型输出上。第三,从成功的模型中推断多尺度时空通道的感知作用。我们开发了一个二维运动检测器实现版本,添加了一个全局(单值)逐帧动态读数,以量化连续和振荡响应成分。我们证实,预期的标志性振荡运动响应与脚步错觉相对应,表明其幅度根据实测的错觉强度而变化。我们表明,通过全局读数,相关检测器固有的模式和对比度依赖性足以重现令人惊讶的感知错觉。这一证据表明,时空相关性可能是跨物种的一种基本感官计算方式,具有适用于各种复杂现象的互补滤波和全局汇总操作。

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