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通过在对数极坐标表示中寻找最短路径,对封闭、碎片化轮廓进行空间全局整合。

Spatially-global integration of closed, fragmented contours by finding the shortest-path in a log-polar representation.

作者信息

Kwon TaeKyu, Agrawal Kunal, Li Yunfeng, Pizlo Zygmunt

机构信息

Department of Psychological Sciences, Purdue University, USA.

Department of Computer Science, Purdue University, USA.

出版信息

Vision Res. 2016 Sep;126:143-163. doi: 10.1016/j.visres.2015.06.007. Epub 2015 Aug 14.

Abstract

Finding the occluding contours of objects in real 2D retinal images of natural 3D scenes is done by determining, which contour fragments are relevant, and the order in which they should be connected. We developed a model that finds the closed contour represented in the image by solving a shortest path problem that uses a log-polar representation of the image; the kind of representation known to exist in area V1 of the primate cortex. The shortest path in a log-polar representation favors the smooth, convex and closed contours in the retinal image that have the smallest number of gaps. This approach is practical because finding a globally-optimal solution to a shortest path problem is computationally easy. Our model was tested in four psychophysical experiments. In the first two experiments, the subject was presented with a fragmented convex or concave polygon target among a large number of unrelated pieces of contour (distracters). The density of these pieces of contour was uniform all over the screen to minimize spatially-local cues. The orientation of each target contour fragment was randomly perturbed by varying the levels of jitter. Subjects drew a closed contour that represented the target's contour on a screen. The subjects' performance was nearly perfect when the jitter-level was low. Their performance deteriorated as jitter-levels were increased. The performance of our model was very similar to our subjects'. In two subsequent experiments, the subject was asked to discriminate a briefly-presented egg-shaped object while maintaining fixation at several different positions relative to the closed contour of the shape. The subject's discrimination performance was affected by the fixation position in much the same way as the model's.

摘要

在自然三维场景的真实二维视网膜图像中找到物体的遮挡轮廓,是通过确定哪些轮廓片段是相关的以及它们的连接顺序来实现的。我们开发了一种模型,该模型通过解决一个使用图像对数极坐标表示的最短路径问题来找到图像中表示的封闭轮廓;这种表示形式已知存在于灵长类动物皮层的V1区。对数极坐标表示中的最短路径有利于视网膜图像中具有最少间隙的平滑、凸形和封闭轮廓。这种方法是可行的,因为找到最短路径问题的全局最优解在计算上很容易。我们的模型在四个心理物理学实验中进行了测试。在前两个实验中,向受试者呈现一个碎片化的凸多边形或凹多边形目标,周围是大量不相关的轮廓片段(干扰物)。这些轮廓片段在整个屏幕上的密度是均匀的,以尽量减少空间局部线索。通过改变抖动水平,每个目标轮廓片段的方向被随机扰动。受试者在屏幕上绘制一个代表目标轮廓的封闭轮廓。当抖动水平较低时,受试者的表现几乎完美。随着抖动水平的增加,他们的表现会变差。我们模型的表现与受试者的表现非常相似。在随后的两个实验中,要求受试者在相对于形状的封闭轮廓保持注视在几个不同位置的同时,辨别一个短暂呈现的蛋形物体。受试者的辨别表现受注视位置的影响方式与模型的大致相同。

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