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Visual and haptic discrimination of symmetry in unfamiliar displays extended in the z-axis

机译:在z轴上扩展的陌生显示中对称的视觉和触觉辨别

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摘要

We investigated, in two experiments, the discrimination of bilateral symmetry in vision and touch using four sets of unfamiliar displays. They varied in complexity from 3 to 30 turns. Two sets were 2-D flat forms (raised-line shapes and raised surfaces) while the other two were 3-D objects constructed by extending the 2-D shapes in height (short and tall objects). Experiment 1 showed that visual accuracy was excellent but latencies increased for raised-line shapes compared with 3-D objects. Experiment 2 showed that unimanual exploration was more accurate for asymmetric than for symmetric judgments, but only for 2-D shapes and short objects. Bimanual exploration at the body midline facilitated the discrimination of symmetric shapes without changing performance with asymmetric ones. Accuracy for haptically explored symmetric stimuli improved as the stimuli were extended in the third dimension, while no such a trend appeared for asymmetric stimuli. Unlike vision, haptic response latency decreased for 2-D shapes compared with 3-D objects. The present results are relevant to the understanding of symmetry discrimination in vision and touch.
机译:我们在两个实验中使用四组不熟悉的显示器研究了视觉和触觉中双侧对称性的辨别。它们的复杂度从3到30圈不等。两组是2-D平面形状(凸起线形和凸起表面),而另外两组是通过扩展2-D形状的高度而构造的3-D对象(短而高的对象)。实验1表明,与3-D对象相比,凸起线条形状的视觉准确性极佳,但延迟增加了。实验2表明,对于非对称判断,单人探索比对对称判断更准确,但对于二维形状和短物体而言,单人探索更为准确。在身体中线的双手探查有助于在不改变非对称形状性能的情况下区分对称形状。触觉探索的对称刺激的准确性随着刺激在三维中的扩展而提高,而非对称刺激则没有这种趋势出现。与视觉不同,与3D对象相比,2D形状的触觉响应潜伏期缩短。目前的结果与视觉和触摸中对称性歧视的理解有关。

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