Benton C P, Johnston A, McOwan P W, Victor J D
Department of Psychology, University College London, UK.
J Opt Soc Am A Opt Image Sci Vis. 2001 Sep;18(9):2204-8. doi: 10.1364/josaa.18.002204.
It is generally assumed that the perception of non-Fourier motion requires the operation of some nonlinearity before motion analysis. We apply a computational model of biological motion processing to a class of non-Fourier motion stimuli designed to investigate nonlinearity in human visual processing. The model correctly detects direction of motion in these non-Fourier stimuli without recourse to any preprocessing nonlinearity. This demonstrates that the non-Fourier motion in some non-Fourier stimuli is directly available to luminance-based motion mechanisms operating on measurements of local spatial and temporal gradients.
一般认为,对非傅里叶运动的感知需要在运动分析之前进行一些非线性操作。我们将生物运动处理的计算模型应用于一类非傅里叶运动刺激,以研究人类视觉处理中的非线性。该模型无需任何预处理非线性就能正确检测这些非傅里叶刺激中的运动方向。这表明,某些非傅里叶刺激中的非傅里叶运动可直接用于基于亮度的运动机制,该机制基于局部空间和时间梯度的测量进行操作。