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Ontogenetic Ritualization of Primate Gesture as a Case Study in Dyadic Brain Modeling

机译:灵长类动物手势的本体遗传学礼节化-以二进脑模型为例

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This paper introduces dyadic brain modeling - the simultaneous, computational modeling of the brains of two interacting agents - to explore ways in which our understanding of macaque brain circuitry can ground new models of brain mechanisms involved in ape interaction. Specifically, we assess a range of data on gestural communication of great apes as the basis for developing an account of the interactions of two primates engaged in ontogenetic ritualization, a proposed learning mechanism through which a functional action may become a communicative gesture over repeated interactions between two individuals (the 'dyad'). The integration of behavioral, neural, and computational data in dyadic (or, more generally, social) brain modeling has broad application to comparative and evolutionary questions, particularly for the evolutionary origins of cognition and language in the human lineage.We relate this work to the neuroinformatics challenges of integrating and sharing data to support collaboration between primatologists, neuroscientists and modelers that will help speed the emergence of what may be called comparative neuro-primatology.
机译:本文介绍了二元大脑模型-两种相互作用因子的大脑的同步计算模型-探索探索我们对猕猴大脑电路的理解可以为猿相互作用中涉及的大脑机制的新模型奠定基础的方法。具体来说,我们评估了有关大猿类的手势交流的一系列数据,以此作为建立两个参与个体化仪式的灵长类动物相互作用的基础,这是一种拟议的学习机制,通过该机制,功能性动作可能会成为重复进行的人与人之间交流的手势两个人(“二元组”)。行为,神经和计算数据在二进(或更普遍地说是社会)大脑建模中的集成已广泛应用于比较和进化问题,尤其是人类谱系中认知和语言的进化起源。整合和共享数据以支持灵长类动物学家,神经科学家和建模者之间的协作所面临的神经信息学挑战,这将有助于加速所谓的比较神经灵长动物学的出现。

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