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Laterality and the evolution of the prefronto-cerebellar system in anthropoids

机译:横向性和前甲虫系统在人体中的横向和演变

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There is extensive evidence for an early vertebrate origin of lateralized motor behavior and of related asymmetries in underlying brain systems. We investigate human lateralized motor functioning in a broad comparative context of evolutionary neural reorganization.We quantify evolutionary trends in the fronto-cerebellar system (involved in motor learning) across 46 million years of divergent primate evolution by comparing rates of evolution of prefrontal cortex, frontal motor cortex, and posterior cerebellar hemispheres along individual branches of the primate tree of life.We provide a detailed evolutionarymodel of the neuroanatomical changes leading tomodern human lateralized motor functioning, demonstrating an increased role for the fronto-cerebellar system in the apes dating to their evolutionary divergence fromthemonkeys (~30 million years ago (Mya)), and a subsequent shift toward an increased role for prefrontal cortex over frontal motor cortex in the fronto-cerebellar systemin the Homo-Pan ancestral lineage (~10Mya) and in the human ancestral lineage (~6Mya).We discuss these results in the context of cortico-cerebellar functions and their likely role in the evolution of human tool use and speech.
机译:有广泛的脊椎动物起源的广泛证据,侧向电机行为和底层脑系统中的相关不对称。我们在进化神经重组的广泛比较背景下调查人横向的电动机功能。通过比较前额叶皮质,正面的进化率,量化了4600万年的分歧灵长类动物进化中的额外大脑系统(涉及电机学习)的进化趋势。电机皮质和沿着寿命灵长类动物树的单个分支的后小脑脉半球。我们提供了一种神经解Otom改变领先的Tomodern人类侧向电动机功能的详细进化学,展示了猿人在猿人的展示中的前瞻性系统增加了增加的作用昏迷(〜3000万年前(MYA)),随后转向前额外的前额落型在普遍的前列电机皮层中的前额落型血管系列(〜10mya)和人类祖先血管谱系的额外转变(〜6mya)。我们在Cortico-cerebellar fu的背景下讨论这些结果惩治和他们可能在人类工具使用和演讲演变中的作用。

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