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Criterion-free measurement of motion transparency perception at different speeds

机译:不同速度下运动透明感的无标准测量

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摘要

Transparency perception often occurs when objects within the visual scene partially occlude each other or move at the same time, at different velocities across the same spatial region. Although transparent motion perception has been extensively studied, we still do not understand how the distribution of velocities within a visual scene contribute to transparent perception. Here we use a novel psychophysical procedure to characterize the distribution of velocities in a scene that give rise to transparent motion perception. To prevent participants from adopting a subjective decision criterion when discriminating transparent motion, we used an “odd-one-out,” three-alternative forced-choice procedure. Two intervals contained the standard—a random-dot-kinematogram with dot speeds or directions sampled from a uniform distribution. The other interval contained the comparison—speeds or directions sampled from a distribution with the same range as the standard, but with a notch of different widths removed. Our results suggest that transparent motion perception is driven primarily by relatively slow speeds, and does not emerge when only very fast speeds are present within a visual scene. Transparent perception of moving surfaces is modulated by stimulus-based characteristics, such as the separation between the means of the overlapping distributions or the range of speeds presented within an image. Our work illustrates the utility of using objective, forced-choice methods to reveal the mechanisms underlying motion transparency perception.
机译:透明感通常发生在视觉场景中的对象在同一空间区域内以不同速度部分相互遮挡或同时移动时。尽管已经对透明运动感知进行了广泛研究,但是我们仍然不了解视觉场景中的速度分布如何有助于透明感知。在这里,我们使用一种新颖的心理物理过程来表征场景中速度的分布,从而产生透明的运动感知。为了防止参与者在区分透明运动时采用主观决定标准,我们使用了“奇一单”三替代强迫选择程序。两个间隔包含标准-随机点运动图,其中点速度或方向是从均匀分布中采样的。另一个间隔包含比较-从与标准范围相同的分布中采样的速度或方向,但去除了不同宽度的陷波。我们的结果表明,透明的运动感知主要是由相对较慢的速度驱动的,而当视觉场景中只有非常快的速度时,透明运动感知就不会出现。通过基于刺激的特征(例如重叠分布的均值之间的间隔或图像内呈现的速度范围)来调节运动表面的透明感知。我们的工作说明了使用客观的强制选择方法来揭示运动透明感知基础的实用性。

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