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A BIOLOGICALLY PLAUSIBLE MODEL OF EARLY VISUAL MOTION PROCESSING .2. PSYCHOPHYSICAL APPLICATION

机译:早期视觉运动处理的生物学上可行的模型2。心理应用

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摘要

We test the model of early visual processing introduced in the companion paper by simulating a range of psychophysical phenomena. We present new data concerning our ability to discriminate the speed of drifting gratings when spatiotemporally apertured in a variety of ways. We shall investigate the role played by the aperture in modifying the grating's behaviour from its idealisation as a pure Fourier component and show that this is not negligible. Other phenomena which we simulate and explain relate to the way perceived velocity is influenced by contrast and spatial frequency. Many of our explanations are couched in terms of the relative number of cells occurring within each locale of the Fourier domain. This use of the cell density map is a unifying concept and avoids the necessity for a range of separate mechanisms. We argue that a neurophysiologically detailed model is necessary in order to explain psychophysical data (Weber fractions) which vary over less than an order of magnitude, and small deviations from veridical encoding of velocity. [References: 20]
机译:通过模拟一系列心理生理现象,我们测试了随书中介绍的早期视觉处理模型。我们提供了有关以多种方式在时空孔径中区分漂移光栅速度的能力的新数据。我们将从理想化为纯傅立叶分量的理想化情况中研究孔径在改变光栅行为方面所起的作用,并证明这是可以忽略的。我们模拟和解释的其他现象与感知速度受对比度和空间频率影响的方式有关。我们的许多解释都是根据傅立叶域的每个区域内出现的单元的相对数量来进行的。细胞密度图的这种使用是一个统一的概念,并且避免了一系列单独机制的必要性。我们认为神经生理学上的详细模型是必要的,以便解释心理物理数据(韦伯分数)的变化幅度小于一个数量级,并且与速度的垂直编码之间存在很小的偏差。 [参考:20]

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