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View-Invariance Learning in Object Recognition by Pigeons Depends on Error-Driven Associative Learning Processes

机译:鸽子对象识别中的视图 - 不变性学习取决于错误驱动的关联学习过程

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摘要

A model hypothesizing that basic mechanisms of associative learning and generalization underlie object categorization in vertebrates can account for a large body of animal and human data. Here, we report two experiments which implicate error-driven associative learning in pigeons’ recognition of objects across changes in viewpoint. Experiment 1 found that object recognition across changes in viewpoint depends on how well each view predicts reward. Analyses of generalization performance, spatial position of pecks to images, and learning curves all showed behavioral patterns analogous to those found in prior studies of relative validity in associative learning. In Experiment 2, pigeons were trained to recognize objects from multiple viewpoints, which usually promotes robust performance at novel views of the trained objects. However, when the objects possessed a salient, informative metric property for solving the task, the pigeons did not show view-invariant recognition of the training objects, a result analogous to the overshadowing effect in associative learning.
机译:假设脊椎动物联想学习和泛化基本对象分类的模型可以解释大量的动物和人类数据。在这里,我们报告了两个实验,致命鸽子在视点中的变化中识别对象的错误驱动的关联学习。实验1发现对象识别在视点中的变化取决于每个视图如何预测奖励。分析概括性性能,啄波到图像的空间位置,以及学习曲线的所有表现出类似于在联合学习中相对有效性的先前研究中发现的行为模式。在实验2中,捕获鸽子以识别来自多个观点的对象,这通常促进训练有素的物体的新颖视图中的鲁棒性能。然而,当物体拥有突出的信息,用于解决任务的突出的信息,鸽子没有显示对训练对象的看法识别,结果类似于联想学习中的过海面效果。

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