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Quantitative uniqueness of human brain evolution revealed through phylogenetic comparative analysis

机译:通过系统发育比较分析揭示人类大脑进化的数量唯一性

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摘要

While the human brain is clearly large relative to body size, less is known about the timing of brain and brain component expansion within primates and the relative magnitude of volumetric increases. Using Bayesian phylogenetic comparative methods and data for both extant and fossil species, we identified that a distinct shift in brain-body scaling occurred as hominins diverged from other primates, and again as humans and Neanderthals diverged from other hominins. Within hominins, we detected a pattern of directional and accelerating evolution towards larger brains, consistent with a positive feedback process in the evolution of the human brain. Contrary to widespread assumptions, we found that the human neocortex is not exceptionally large relative to other brain structures. Instead, our analyses revealed a single increase in relative neocortex volume at the origin of haplorrhines, and an increase in relative cerebellar volume in apes.
机译:尽管人脑相对于体型而言显然很大,但是人们对灵长类动物的大脑和大脑成分扩张的时机以及体积的相对大小却知之甚少。使用贝叶斯系统发育比较方法和现存物种和化石物种的数据,我们发现,当人参与其他灵长类动物分离时,以及当人类和尼安德特人与其他人参与动物相分离时,大脑-身体尺度发生了明显变化。在人参素中,我们检测到了朝向大脑的定向和加速进化模式,这与人脑进化中的正反馈过程一致。与普遍的假设相反,我们发现人的新皮层相对于其他大脑结构而言并不是特别大。取而代之的是,我们的分析显示单倍体起源时相对新皮层体积仅增加,而猿类中相对小脑体积则增加。

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