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复杂生物图像中双侧对称性的检测

Detection of bilateral symmetry in complex biological images.

作者信息

Evans C S, Wenderoth P, Cheng K

机构信息

Department of Psychology, Macquarie University, Sydney, NSW, Australia.

出版信息

Perception. 2000;29(1):31-42. doi: 10.1068/p2905.

Abstract

The recognition of bilateral symmetry in simple dot patterns is reliably influenced by orientation. Performance is best when the axis of symmetry is vertical. We conducted two experiments to determine whether stimulus orientation also affects detection of the low levels of naturally occurring asymmetry in complex biological images. University students judged whether colour images displayed on a computer monitor possessed perfect bilateral symmetry. Stimuli were generated from high-resolution plan-view images of crabs and insects. In experiment 1, the asymmetric stimuli were the original animals, displayed on a standard black background. Symmetrical versions of each natural image were generated by sectioning the shape at the midline, copying and reflecting one side and then fusing the two halves together. To facilitate comparison of results with those obtained in earlier studies, we also presented dot patterns based upon both the slightly asymmetric and perfectly symmetrical natural images. Experiment 2 was designed to assess whether symmetry detection was dependent upon the markings and patterns on the body and appendages of the animals. The natural images were converted to silhouettes and tested against matched dot patterns. In both studies, images were presented in a random sequence with the axis of symmetry vertical, horizontal, oblique left, and oblique right. Performance with the biological images was consistently better than with the dot patterns. Abolishing fine detail did not appreciably reduce this effect. A pronounced vertical advantage was apparent with all stimuli, demonstrating that this phenomenon is robust despite considerable variation in image complexity. The implications of orientation effects for perception of natural structures are discussed.

摘要

在简单的点状图案中,对双侧对称性的识别会受到方向的可靠影响。当对称轴为垂直方向时,表现最佳。我们进行了两项实验,以确定刺激方向是否也会影响对复杂生物图像中自然存在的低水平不对称性的检测。大学生判断计算机显示器上显示的彩色图像是否具有完美的双侧对称性。刺激物是从螃蟹和昆虫的高分辨率平面图图像生成的。在实验1中,不对称刺激物是原始动物,显示在标准黑色背景上。通过在中线处切割形状、复制并反射一侧,然后将两半融合在一起,生成每个自然图像的对称版本。为便于将结果与早期研究的结果进行比较,我们还展示了基于略微不对称和完全对称的自然图像的点状图案。实验2旨在评估对称性检测是否取决于动物身体和附属肢体上的标记和图案。将自然图像转换为轮廓,并与匹配的点状图案进行测试。在两项研究中,图像均以随机顺序呈现,对称轴分别为垂直、水平、左斜和右斜。对生物图像的识别表现始终优于点状图案。去除精细细节并没有明显降低这种效果。所有刺激物都呈现出明显的垂直优势,表明尽管图像复杂性存在相当大的差异,但这种现象仍然很明显。我们讨论了方向效应对自然结构感知的影响。

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