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Spontaneous Learning of Visual Structures in Domestic Chicks

机译:自发学习家禽的视觉结构

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Effective communication crucially depends on the ability to produce and recognize structured signals, as apparent in language and birdsong. Although it is not clear to what extent similar syntactic-like abilities can be identified in other animals, recently we reported that domestic chicks can learn abstract visual patterns and the statistical structure defined by a temporal sequence of visual shapes. However, little is known about chicks’ ability to process spatial/positional information from visual configurations. Here, we used filial imprinting as an unsupervised learning mechanism to study spontaneous encoding of the structure of a configuration of different shapes. After being exposed to a triplet of shapes (ABC or CAB), chicks could discriminate those triplets from a permutation of the same shapes in different order (CAB or ABC), revealing a sensitivity to the spatial arrangement of the elements. When tested with a fragment taken from the imprinting triplet that followed the familiar adjacency-relationships (AB or BC) vs. one in which the shapes maintained their position with respect to the stimulus edges (AC), chicks revealed a preference for the configuration with familiar edge elements, showing an edge bias previously found only with temporal sequences.
机译:有效的沟通至关重要地取决于产生和识别结构化信号的能力,如语言和鸟鸣般明显。尽管尚不清楚在其他动物中可以在多大程度上识别类似的句法样能力,但最近我们报道了家禽可以学习抽象的视觉模式和由视觉形状的时间序列定义的统计结构。但是,关于雏鸡从视觉形态处理空间/位置信息的能力知之甚少。在这里,我们使用孝子印记作为一种无监督的学习机制来研究不同形状的结构的自发编码。在暴露于三元组形状(ABC或CAB)之后,小鸡可以将三胞胎与相同形状的排列以不同顺序(CAB或ABC)区分开来,从而显示出对元素空间排列的敏感性。当使用从印记三联体中提取的片段进行测试时,该片段遵循熟悉的邻接关系(AB或BC)与形状相对于刺激边缘(AC)保持位置相对应的片段,雏鸡表现出对带有熟悉的边缘元素,显示以前仅在时间序列中发现的边缘偏差。

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