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Perceived shift of the centres of contracting and expanding optic flow fields: Different biases in the lower-right and upper-right visual quadrants

机译:收缩和扩展光学流场中心的感知位移:右下和右上象限的不同偏差

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摘要

We studied differences in localizing the centres of flow in radially expanding and contracting patterns in different regions of the visual field. Our results suggest that the perceived centre of a peripherally viewed expanding pattern is shifted towards the fovea relative to that of a contracting pattern, but only in the lower right and upper right visual quadrants and when a single speed gradient with appropriate overall speeds of the trajectories of the moving dots was used. The biases were not systematically related to differences of sensitivity to optic flow in different quadrants. Further experiments demonstrated that the biases were likely due to a combination of two effects: an advantage of global processing in favor of the lower visual hemifield and a hemispheric asymmetry in attentional allocation in favor of motion-induced spatial displacement in the right visual hemifield. The bias in the lower right visual quadrant was speed gradient-sensitive and could be reduced to a non-significant level with the usage of multiple speed gradients, possibly due to a special role of the lower visual hemifield in extracting global information from the multiple speed gradients. A holistic processing on multiple speed gradients, rather than a predominant processing on a single speed gradient, was likely adopted. In contrast, the perceived bias in the upper right visual quadrant was overall speed-sensitive and could be reduced to a non-significant level with the reduction of the overall speeds of the trajectories. The implications of these results for understanding motion-induced spatial illusions are discussed.
机译:我们研究了在视野的不同区域中径向扩展和收缩模式中的流中心局部化的差异。我们的结果表明,相对于收缩模式,周围观察到的扩展模式的感知中心向中央凹偏移,但仅在右下和右上象限以及具有适当总体轨迹速度的单个速度梯度时使用了移动的点。偏差与不同象限中对光流的敏感性差异没有系统地相关。进一步的实验表明,这种偏见可能是由于两种效应的结合:整体处理有利于下半视觉半球的优势和半球不对称性在注意力分配方面的优势,有利于右半视运动的运动引起的空间位移。右下象限中的偏差对速度梯度敏感,可以通过使用多个速度梯度将其减小到不明显的水平,这可能是由于下半部视觉半视野在从多个速度中提取全局信息中的特殊作用渐变。可能会采用对多个速度梯度的整体处理,而不是对单个速度梯度的主要处理。相反,右上象限中的感知偏差是整体速度敏感的,并且可以随着轨迹整体速度的降低而减小到不显着的水平。讨论了这些结果对于理解运动引起的空间错觉的含义。

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