二阶运动知觉:时空可分离机制

C. Chubb, G. Sperling
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引用次数: 55

摘要

微平衡刺激被定义为动态显示,它不刺激应用标准(傅里叶能量或自相关)运动分析直接对视觉信号的运动机制。由于微平衡刺激绕过了这种一阶机制,因此对研究二阶运动感知(运动感知由需要在标准运动分析之前进行严重非线性刺激转换的机制提供)非常有用。一些刺激在所有点刺激转换下都是微平衡的,因此对早期视觉非线性免疫。它们被用来禁用来自空间(时间)滤波的运动信息,以隔离空间/时间可分离的二阶运动机构的时间(空间)属性。所有考虑的微平衡刺激的运动可以通过带选择性空间滤波和双相时间滤波提取,DC非零,然后进行非线性校正和标准运动分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Second-order motion perception: space/time separable mechanisms
Microbalanced stimuli are defined as dynamic displays which do not stimulate motion mechanisms that apply standard (Fourier-energy or autocorrelation) motion analysis directly to the visual signal. Because they bypass such first-order mechanisms, microbalanced stimuli are uniquely useful for studying second-order motion perception (motion perception served by mechanisms that require a grossly nonlinear stimulus transformation prior to standard motion analysis). Some stimuli are microbalanced under all pointwise stimulus transformations and therefore are immune to early visual nonlinearities. They are used to disable motion information derived from spatial (temporal) filtering to isolate the temporal (spatial) properties of space/time separable second-order motion mechanisms. The motion of all of the microbalanced stimuli considered can be extracted by band-selective spatial filtering and biphasic temporal filtering, nonzero in DC, followed by a rectifying nonlinearity and standard motion analysis.<>
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