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Moving from spatially segregated to transparent motion: a modelling approach

机译:从空间分离运动转变为透明运动:一种建模方法

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摘要

Motion transparency, in which patterns of moving elements group together to give the impression of lacy overlapping surfaces, provides an important challenge to models of motion perception. It has been suggested that we perceive transparent motion when the shape of the velocity histogram of the stimulus is bimodal. To investigate this further, random-dot kinematogram motion sequences were created to simulate segregated (perceptually spatially separated) and transparent (perceptually overlapping) motion. The motion sequences were analysed using the multi-channel gradient model (McGM) to obtain the speed and direction at every pixel of each frame of the motion sequences. The velocity histograms obtained were found to be quantitatively similar and all were bimodal. However, the spatial and temporal properties of the velocity field differed between segregated and transparent stimuli. Transparent stimuli produced patches of rightward and leftward motion that varied in location over time. This demonstrates that we can successfully differentiate between these two types of motion on the basis of the time varying local velocity field. However, the percept of motion transparency cannot be based simply on the presence of a bimodal velocity histogram.
机译:运动透明性(运动元素的模式组合在一起以产生花边重叠表面的印象)对运动感知模型提出了重要挑战。已经提出,当刺激的速度直方图的形状为双峰时,我们可以感知到透明运动。为了进一步研究这一点,创建了随机点运动图运动序列,以模拟分离(在空间上感知为分离)和透明(在视觉上重叠)的运动。使用多通道梯度模型(McGM)分析运动序列,以获得运动序列每一帧每个像素处的速度和方向。发现获得的速度直方图在数量上相似,并且都是双峰的。但是,速度场的时空特性在隔离的和透明的刺激之间是不同的。透明刺激产生向右和向左运动的斑块,其位置随时间变化。这表明我们可以根据时变的局部速度场成功地区分这两种类型的运动。但是,运动透明性的感知不能仅基于双峰速度直方图的存在。

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