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Cognitive innovations and the evolutionary biology of expertise

机译:认知创新与专业知识的进化生物学

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摘要

Animal life can be perceived as the selective use of information for maximizing survival and reproduction. All organisms including bacteria and protists rely on genetic networks to build and modulate sophisticated structures and biochemical mechanisms for perceiving information and responding to environmental changes. Animals, however, have gone through a series of innovations that dramatically increased their capacity to acquire, retain and act upon information. Multicellularity was associated with the evolution of the nervous system, which took over many tasks of internal communication and coordination. This paved the way for the evolution of learning, initially based on individual experience and later also via social interactions. The increased importance of social learning also led to the evolution of language in a single lineage. Individuals' ability to dramatically increase performance via learning may have led to an evolutionary cycle of increased lifespan and greater investment in cognitive abilities, as well as in the time necessary for the development and refinement of expertise. We still know little, however, about the evolutionary biology, genetics and neurobiological mechanisms that underlie such expertise and its development.
机译:动物生命可以被认为是选择性地使用信息,以便最大化生存和繁殖。所有生物体,包括细菌和保护者都依赖于遗传网络来构建和调节复杂的结构和生化机制,以便感知信息和应对环境变化。然而,动物已经经历了一系列创新,从而大大增加了他们的收购能力,保留和行动。多晶粒与神经系统的演变有关,它接受了许多内部沟通和协调的任务。这为学习的演变铺平了道路,最初基于个人经验,并通过社交互动。社会学习的重要性增加也导致了单个谱系中语言的演变。个人大大提高绩效的能力可能导致了增加了寿命的进化循环,更大的认知能力投资,以及在开发和改进专业知识所必需的时间内。然而,我们仍然知道涉及这种专业知识和发展的进化生物学,遗传学和神经生物学机制。

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