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The “Spinner” Illusion: More Dots, More Speed?

机译:“旋转者”的错觉:更多点,更多速度?

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The perceived speed of a ring of equally spaced dots moving around a circular path appears faster as the number of dots increases (Ho & Anstis, 2013, Best Illusion of the Year contest). We measured this “spinner” effect with radial sinusoidal gratings, using a 2AFC procedure where participants selected the faster one between two briefly presented gratings of different spatial frequencies (SFs) rotating at various angular speeds. Compared with the reference stimulus with 4?c/rev (0.64?c/rad), participants consistently overestimated the angular speed for test stimuli of higher radial SFs but underestimated that for a test stimulus of lower radial SFs. The spinner effect increased in magnitude but saturated rapidly as the test radial SF increased. Similar effects were observed with translating linear sinusoidal gratings of different SFs. Our results support the idea that human speed perception is biased by temporal frequency, which physically goes up as SF increases when the speed is held constant. Hence, the more dots or lines, the greater the perceived speed when they are moving coherently in a defined area.
机译:随着点数的增加,等距点的圆环在圆形路径上移动的感知速度会更快(Ho&Anstis,2013年,年度最佳幻觉比赛)。我们使用2AFC程序使用径向正弦光栅测量了这种“旋转”效果,参与者在两个简要介绍的,以不同角速度旋转的不同空间频率(SF)的光栅之间选择了更快的光栅。与具有4?c / rev(0.64?c / rad)的参考刺激相比,参与者始终高估了较高径向SF的测试刺激的角速度,但低估了较低径向SF的测试刺激的角速度。随着测试径向SF的增加,旋转器效果的幅度增加,但迅速饱和。在平移不同SF的线性正弦光栅时也观察到了类似的效果。我们的研究结果支持这样一种观点,即人类的速度感知受时间频率的影响,当速度保持恒定时,时间频率会随着SF的增加而物理上增加。因此,点或线越多,当它们在定义的区域内连贯移动时,可感知的速度就越大。

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