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方向和对比度闪烁对日常物体轮廓的轮廓显著性的影响。

The influence of orientation and contrast flicker on contour saliency of outlines of everyday objects.

作者信息

Nygård Geir Eliassen, Sassi Michaël, Wagemans Johan

机构信息

Laboratory of Experimental Psychology, University of Leuven (K.U. Leuven), Belgium.

出版信息

Vision Res. 2011 Jan;51(1):65-73. doi: 10.1016/j.visres.2010.09.032. Epub 2010 Oct 7.

Abstract

One of the most important tasks of the visual system is the extraction of edges and object contours, and the integration of discrete elements to form a coherent global percept. A great deal is known about the spatial properties of contour extraction, but less is known about the dynamics and spatio-temporal aspects. We used Gabor-rendered outlines of real-world objects, where we could manipulate low-level properties, such as element orientation and phase, while incorporating higher-level properties, such as object complexity and identity, to study dynamic relationships in object detection. First we manipulated the time available for integration by changing back and forth between coherent and non-coherent orientations of the contour elements. We then manipulated contrast flicker by reversing the spatial phase of the Gabor elements at various frequencies. We found similar results to earlier studies on contour detection: detection was better for contrast flicker than for orientation flicker, and detection performance was curvature-dependent for orientation flicker but not for contrast flicker. Our results support the existence of at least two temporal frequency channels in the visual system, one low-pass and one band-pass peaking around 10-12 Hz. In addition, we found that object properties, such as identity and complexity, affected detection performance.

摘要

视觉系统最重要的任务之一是提取边缘和物体轮廓,以及整合离散元素以形成连贯的整体感知。我们对轮廓提取的空间特性了解很多,但对其动态和时空方面了解较少。我们使用了真实物体的伽柏渲染轮廓,在其中我们可以操纵诸如元素方向和相位等低级属性,同时纳入诸如物体复杂性和身份等高级属性,以研究物体检测中的动态关系。首先,我们通过在轮廓元素的连贯和不连贯方向之间来回切换来操纵可用于整合的时间。然后,我们通过在不同频率下反转伽柏元素的空间相位来操纵对比度闪烁。我们发现了与早期轮廓检测研究相似的结果:对比度闪烁的检测效果优于方向闪烁,并且对于方向闪烁,检测性能取决于曲率,而对于对比度闪烁则不然。我们的结果支持视觉系统中至少存在两个时间频率通道,一个低通通道和一个在10 - 12赫兹左右达到峰值的带通通道。此外,我们发现物体属性,如身份和复杂性,会影响检测性能。

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