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首页> 外文期刊>Animal Behavior and Cognition >The Development of Sensorimotor Cognition in Common Ravens (Corvus corax) and its Comparative Evolution
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The Development of Sensorimotor Cognition in Common Ravens (Corvus corax) and its Comparative Evolution

机译:普通乌鸦(Corvus corax)中的感觉运动仪认知的发展及其对比演化

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Evolution involves developmental change. Species comparisons play an important role in comparative cognition because they can uncover common patterns and shared principles in cognitive evolution. Developmental studies reveal foundational elements of cognitive abilities and how they are constructed and integrated. Sensorimotor cognition is such a key element that forms the foundation for later-developing cognitive skills, yet little is known about its development in animals. This study uses 37 behaviors and tasks to investigate the development of Piagetian sensorimotor abilities in five young ravens ( Corvus corax ) from ages two to eleven weeks. Their developmental pattern largely mirrored that of twelve other bird and mammal species, albeit at a markedly accelerated rate. They reached the final sensorimotor stage, which to date has been shown only in great apes. The onset and sequence of sensorimotor development was identical for all species. Absolute number of neurons in the pallium and rest of brain was associated with achieving a higher stage across these species. This was not the case for absolute or relative brain mass, or number of neurons in the cerebellum or whole brain. We discuss the independent evolution of sensorimotor cognition and the importance of developmental pace and pattern therein. These findings show that the study of sensorimotor development is a useful tool for comparative cognition research.
机译:进化涉及发展变革。物种比较在比较认知中发挥着重要作用,因为它们可以在认知演化中揭示共同的模式和共同原则。发展研究揭示了认知能力的基本要素以及它们的构建和整合。 Sensorimotor认知是一种构成后期开发认知技能的基础,但在动物的发展中众所周知。本研究采用37项行为和任务来调查五个年轻乌鸦(Corvus Corax)的Piagetian感觉能力的发展,从两年到十一周。它们的发展模式在很大程度上反映了12只其他鸟类和哺乳动物物种,尽管具有显着加速的速率。他们达到了最终的感觉电流阶段,迄今为止仅在伟大的猿类中显示。所有物种的发病和传感器发育的序列都是相同的。钯中的绝对数量和脑部的剩余群体与在这些物种上实现更高的阶段相关。对于绝对或相对脑质量或细胞或全脑中的神经元数不是这种情况。我们讨论了传感器认知的独立演变和其中发育速度和模式的重要性。这些发现表明,对感觉运动的研究是对比较认知研究的有用工具。

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