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Interaction between surface-based and edge-based motion mechanisms in the perception of apparent motion.

机译:基于表面的运动和基于边缘的运动机制之间的相互作用,以感知视在运动。

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摘要

The motion of an object may be perceived based on a change in location of either its surface or edges. By isolating the luminance changes produced by a moving object from the physical displacement of its surface and edges, it was found that a static object appears to move when the luminance changes are restricted to a narrow area adjacent to it. Therefore, changes in the luminance contrast of edges are sufficient for the perception of object motion. However, the existence of different motion signals based on luminance changes of edges and surfaces was confirmed by the occurrence of different motion percepts for the same stimulus configuration. As the width of the region which changed in luminance was increased, edge-based motion percepts were replaced by a surface-based motion percept. This study was primarily concerned with the interaction between the mechanisms that signal edge-based motion and surface-based motion. It was found that surface-based motion mechanisms inhibit edge-based motion mechanisms, even when the different motion patterns were in the same direction. Modulating the effects of this inhibition was facilitation between edge-based motion mechanisms when two sliding-edge motions were possible in the same direction. Less facilitation, and possibly inhibition, occurred when the sliding-edge motions were in the opposite compared with the same direction. Finally, there was even greater inhibition from surface-based motion mechanisms ado edge-based motion mechanisms when the different motion patterns were specified in the opposite compared with the same direction. It is concluded that much of the observed inhibition results from high-level perceptual processes that distinguish between whether particular luminance changes are caused by the disappearance and reappearance of one object or by the local movement of multiple objects. Assuming that jumping-object motion is perceived naturally when there is an interruption in the visual processing of a moving object, such as with blinking, the nature of the inhibition would serve to, reduce the inappropriate perception of motion for ether objects adjacent to the previously and newly occupied locations of the moving object.
机译:可以基于对象表面或边缘位置的变化来感知对象的运动。通过将移动物体产生的亮度变化与其表面和边缘的物理位移隔离开,发现当亮度变化限制在与其相邻的狭窄区域时,静态物体似乎会移动。因此,边缘的亮度对比度的变化足以感知物体运动。然而,通过针对相同刺激构造的不同运动感知的出现,确认了基于边缘和表面的亮度变化的不同运动信号的存在。随着亮度变化的区域的宽度增加,基于边缘的运动感知被基于表面的运动感知代替。这项研究主要涉及基于边缘的运动和基于表面的运动的信号之间的相互作用。发现即使不同的运动模式在同一方向上,基于表面的运动机制也会抑制基于边缘的运动机制。当两个滑动边缘的运动可能在同一方向上进行时,调节这种抑制的效果是基于边缘的运动机制之间的促进。当滑动边缘的运动与相同方向相反时,发生的促进作用较小,并且可能受到抑制。最后,当在相同方向上相反地指定不同的运动模式时,基于表面的运动机制和基于边缘的运动机制的抑制作用更大。结论是,许多观察到的抑制作用是由高级感知过程导致的,该过程区分特定的亮度变化是由一个物体的消失和重新出现还是由多个物体的局部运动引起的。假设在运动对象的视觉处理中断时(例如眨眼)自然感觉到跳跃对象的运动,那么抑制的性质将有助于减少与先前相邻的以太对象的运动的不适感和移动物体的新占用位置。

著录项

  • 作者

    Nichols, David F.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Psychology Experimental.;Psychology Cognitive.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 88 p.
  • 总页数 88
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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