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Shape Information Mediating Basic- and Subordinate-Level Object Recognition Revealed by Analyses of Eye Movements

机译:通过眼动分析揭示的形状信息介导基层和下层对象识别

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This study examines the kinds of shape features that mediate basic- and subordinate-level object recognition. Observers were trained to categorize sets of novel'objects at either a basic (between-families) or subordinate (within-family) level of classification. We analyzed the spatial distributions of fixations and compared them to model distributions of different curvature polarity (regions of convex or concave bounding contour), as well as internal part boundaries. The results showed a robust preference for fixation at part boundaries and for concave over convex regions of bounding contour, during both basic- and subordinate-level classification. In contrast, mean saccade amplitudes were shorter during basic- than subordinate-level classification. These findings challenge models of recognition that do not posit any special functional status to part boundaries or curvature polarity. We argue that both basic- and subordinate-level classification are mediated by object representations. These representations make explicit internal part boundaries, and distinguish concave and convex regions of bounding contour. The classification task constrains how shape information in these representations is used, consistent with the hypothesis that both parts-based, and image-based, operations support object recognition in human vision.
机译:这项研究检查了介导基础和下级对象识别的各种形状特征。训练了观察员以基本的(家庭之间)或从属的(家庭内部)分类新颖对象集。我们分析了固定物的空间分布,并将它们与不同曲率极性(凸或凹边界轮廓区域)以及内部零件边界的模型分布进行比较。结果表明,在基本级别和从属级别的分类过程中,都强烈希望将其固定在零件边界处以及凹入的边界轮廓的凸区域上。相反,基本扫视幅度在次要分类中要短。这些发现挑战了没有对零件边界或曲率极性赋予任何特殊功能状态的识别模型。我们认为,基本分类和下级分类都由对象表示来介导。这些表示法明确了内部零件边界,并区分了边界轮廓的凹凸区域。分类任务限制了如何使用这些表示形式中的形状信息,这与基于零件的操作和基于图像的操作都支持人类视觉对象识别的假设相一致。

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