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Global motion processing: The effect of spatial scale and eccentricity

机译:全局运动处理:空间尺度和偏心率的影响

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Here we examine how global translational motion sensitivity varies with the spatial frequency of the elements in local motion and on the eccentricity of stimulation. Using DC-balanced, spatially narrowband elements (radial log Gabors) matched in terms of multiples above contrast threshold, we show that global translational motion sensitivity is best at mid high spatial frequencies and worst at low spatial frequencies. Furthermore, we show that the lower global motion sensitivity of the periphery is due to differences in spatial scale/contrast that can be attributed to lower reaches of the visual pathway where the local motion signal is transduced. Thus, the efficiency of the global translational motion computation that occurs in extrastriate cortical areas does not vary across the visual field. This may not be directly applicable to global radial motion because there are known visual field anisotropies.
机译:在这里,我们研究了整体平移运动敏感性如何随局部运动中元素的空间频率以及刺激的偏心度而变化。使用直流平衡的空间窄带元素(径向对数Gabors)以高于对比度阈值的倍数进行匹配,我们表明全局平移运动灵敏度在中高空间频率处最佳,而在低空间频率处最差。此外,我们表明,较低的整体全局运动灵敏度是由于空间比例/对比度的差异而引起的,该差异可归因于视觉通路的下游,在该通路中本地运动信号被转换。因此,发生在外皮层区域的整体平移运动计算的效率不会在整个视野范围内变化。由于存在已知的视野各向异性,因此这可能无法直接应用于全局径向运动。

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