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Convergent evolution of complex brains and high intelligence

机译:复杂大脑和高智能的融合进化

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摘要

Within the animal kingdom, complex brains and high intelligence have evolved several to many times independently, e.g. among ecdysozoans in some groups of insects (e.g. blattoid, dipteran, hymenopteran taxa), among lophotrochozoans in octopodid molluscs, among vertebrates in teleosts (e.g. cichlids), corvid and psittacid birds, and cetaceans, elephants and primates. High levels of intelligence are invariantly bound to multimodal centres such as the mushroom bodies in insects, the vertical lobe in octopodids, the pallium in birds and the cerebral cortex in primates, all of which contain highly ordered associative neuronal networks. The driving forces for high intelligence may vary among the mentioned taxa, e.g. needs for spatial learning and foraging strategies in insects and cephalopods, for social learning in cichlids, instrumental learning and spatial orientation in birds and social as well as instrumental learning in primates.
机译:在动物界内,复杂的大脑和高智商已经独立发展了好几次到很多次,例如在某些昆虫类的蜕皮动物中(例如,类蝶形,双翅类,膜翅类),在八足软体动物中的灰风毛虫,在硬骨动物中(例如丽鱼科动物),弯曲和齿状鸟类的脊椎动物,以及鲸类,大象和灵长类动物。高水平的智力总是与多种模式的中心联系在一起,例如昆虫的蘑菇体,章鱼的垂直叶,鸟类的皮脂和灵长类的大脑皮层,所有这些都包含高度有序的联想神经网络。在上述分类单元之间,例如,对于高智能的驱动力可能有所不同。昆虫和头足类动物的空间学习和觅食策略,丽鱼科动物的社会学习,鸟类的工具学习和空间定位以及灵长类动物的社会和工具学习的需求。

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