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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Is the direction of second-order, contrast-defined motion patterns visible to standard motion-energy detectors: a model answer?
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Is the direction of second-order, contrast-defined motion patterns visible to standard motion-energy detectors: a model answer?

机译:标准运动能量检测器是否可以看到二阶对比度定义的运动模式的方向:模型答案?

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摘要

Previous psychophysical studies (e.g., Smith & Ledgeway, 1997) have provided evidence that under some conditions, the detection of a particular class of stimuli (contrast-modulated static noise) widely employed to study second-order motion processing may be inadvertently based on encoding local imbalances in luminance motion energy. In particular when static noise composed of relatively large noise elements is used, direction-identification performance at threshold may actually be mediated by the same mechanisms that respond to first-order motion, due to the presence of persistent spatial clusters of noise elements of the same polarity. However, Benton and Johnson (1997) modeled the responses of conventional motion-energy detectors to contrast-modulated static noise patterns and found no evidence of any systematic directional biases in such stimuli when the mean opponent motion energy was used to quantify performance. In the present paper we sought to resolve this discrepancy and show that the precise manner in which computational models are implemented is crucial in determining their response to contrast-modulated, second-order motion patterns. In particular we demonstrate that by considering the information encapsulated by the peak (rather than the mean) opponent motion energy and the predominantly local nature of imbalances in motion energy that can arise in contrast-modulated static noise, it is possible to readily model the patterns of empirical results found.
机译:先前的心理物理学研究(例如Smith和Ledgeway,1997年)提供了证据,表明在某些情况下,广泛用于研究二阶运动处理的特定类别的刺激(对比度调制的静态噪声)的检测可能是无意间基于编码亮度运动能量的局部不平衡。特别是当使用由相对较大的噪声元素组成的静态噪声时,由于存在相同噪声元素的持久空间簇,因此实际上可以由响应一阶运动的相同机制来调节阈值处的方向识别性能。极性。但是,Benton和Johnson(1997)对常规运动能量检测器对对比度调制的静态噪声模式的响应进行了建模,当使用平均对手运动能量来量化性能时,没有发现这种刺激中存在任何系统性方向偏差的证据。在本文中,我们试图解决这一差异,并表明实现计算模型的精确方式对于确定其对对比度调制的二阶运动模式的响应至关重要。特别是,我们证明,通过考虑由峰值(而不是均值)对手运动能量封装的信息,以及在对比度调制的静态噪声中可能产生的运动能量不平衡的主要局部性质,可以轻松地对模式进行建模发现的经验结果。

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