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From Flashes to Edges to Objects: Recovery of Local Edge Fragments Initiates Spatiotemporal Boundary Formation

机译:从闪烁到边缘再到对象:局部边缘片段的恢复启动时空边界形成

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摘要

Spatiotemporal boundary formation (SBF) is the perception of illusory boundaries, global form, and global motion from spatially and temporally sparse transformations of texture elements (Shipley and Kellman, , ; Erlikhman and Kellman, ). It has been theorized that the visual system uses positions and times of element transformations to extract local oriented edge fragments, which then connect by known interpolation processes to produce larger contours and shapes in SBF. To test this theory, we created a novel display consisting of a sawtooth arrangement of elements that disappeared and reappeared sequentially. Although apparent motion along the sawtooth would be expected, with appropriate spacing and timing, the resulting percept was of a larger, moving, illusory bar. This display approximates the minimal conditions for visual perception of an oriented edge fragment from spatiotemporal information and confirms that such events may be initiating conditions in SBF. Using converging objective and subjective methods, experiments showed that edge formation in these displays was subject to a temporal integration constraint of ~80 ms between element disappearances. The experiments provide clear support for models of SBF that begin with extraction of local edge fragments, and they identify minimal conditions required for this process. We conjecture that these results reveal a link between spatiotemporal object perception and basic visual filtering. Motion energy filters have usually been studied with orientation given spatially by luminance contrast. When orientation is not given in static frames, these same motion energy filters serve as spatiotemporal edge filters, yielding local orientation from discrete element transformations over time. As numerous filters of different characteristic orientations and scales may respond to any simple SBF stimulus, we discuss the aperture and ambiguity problems that accompany this conjecture and how they might be resolved by the visual system.
机译:时空边界形成(SBF)是对纹理元素的时空稀疏转换的虚幻边界,整体形式和整体运动的感知(Shipley和Kellman,;; Erlikhman和Kellman,)。从理论上讲,视觉系统使用元素变换的位置和时间来提取局部定向的边缘片段,然后通过已知的插值过程进行连接以在SBF中产生较大的轮廓和形状。为了验证该理论,我们创建了一种新颖的显示器,该显示器由元素的锯齿状排列组成,这些元素依次消失并重新出现。尽管可以预期沿着锯齿的明显运动,并具有适当的间隔和时间,但最终的感觉是更大,移动的幻觉棒。该显示近似了从时空信息视觉感知定向边缘片段的最小条件,并确认此类事件可能是SBF中的起始条件。使用融合的客观和主观方法,实验表明这些显示器中的边缘形成受到元素消失之间〜80 ms的时间积分约束的影响。实验为从提取局部边缘片段开始的SBF模型提供了明确的支持,并且它们确定了此过程所需的最小条件。我们推测这些结果揭示了时空物体感知与基本视觉过滤之间的联系。通常已经研究了运动能量滤波器,其方向由亮度对比度在空间上给出。如果在静态框架中未给出方向,则这些相同的运动能量滤波器将用作时空边缘滤波器,从而随着时间的推移从离散元素变换中产生局部方向。由于许多具有不同特征方向和尺度的过滤器可能会对任何简单的SBF刺激做出响应,因此我们讨论了与此猜想伴随的孔径和模糊性问题,以及它们如何由视觉系统解决。

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