Choi Lark Kwon, Bovik Alan C, Cormack Lawrence K
J Vis. 2016;16(5):19. doi: 10.1167/16.5.19.
The now well-known motion-silencing illusion has shown that salient changes among a group of objects' luminances, colors, shapes, or sizes may appear to cease when objects move rapidly (Suchow & Alvarez, 2011). It has been proposed that silencing derives from dot spacing that causes crowding, coherent changes in object color or size, and flicker frequencies combined with dot spacing (Choi, Bovik, & Cormack, 2014; Peirce, 2013; Turi & Burr, 2013). Motion silencing is a peripheral effect that does not occur near the point of fixation. To better understand the effect of eccentricity on motion silencing, we measured the amount of motion silencing as a function of eccentricity in human observers using traditional psychophysics. Fifteen observers reported whether dots in any of four concentric rings changed in luminance over a series of rotational velocities. The results in the human experiments showed that the threshold velocity for motion silencing almost linearly decreases as a function of log eccentricity. Further, we modeled the response of a population of simulated V1 neurons to our stimuli. We found strong matches between the threshold velocities on motion silencing observed in the human experiment and those seen in the energy model of Adelson and Bergen (1985). We suggest the plausible explanation that as eccentricity increases, the combined motion-flicker signal falls outside the narrow spatiotemporal frequency response regions of the modeled receptive fields, thereby reducing flicker visibility.
如今广为人知的运动消隐错觉表明,当物体快速移动时,一组物体的亮度、颜色、形状或大小的显著变化可能看起来会停止(苏乔&阿尔瓦雷斯,2011年)。有人提出,消隐源于导致拥挤的点间距、物体颜色或大小的连贯变化以及与点间距相结合的闪烁频率(崔、博维克&科马克,2014年;皮尔斯,2013年;图里&伯尔,2013年)。运动消隐是一种周边效应,不会发生在注视点附近。为了更好地理解离心率对运动消隐的影响,我们使用传统心理物理学方法测量了人类观察者中运动消隐量作为离心率的函数。15名观察者报告了在一系列旋转速度下,四个同心环中任何一个环上的点的亮度是否发生了变化。人体实验结果表明,运动消隐的阈值速度几乎随对数离心率呈线性下降。此外,我们对一群模拟的V1神经元对我们的刺激的反应进行了建模。我们发现人体实验中观察到的运动消隐阈值速度与阿德尔森和伯根(1985年)的能量模型中看到的阈值速度之间有很强的匹配。我们提出了一个合理的解释,即随着离心率增加,运动 - 闪烁组合信号落在建模感受野的狭窄时空频率响应区域之外,从而降低了闪烁可见性。