人科动物颞叶的进化和人类颞叶比例的起源。

IF 1.7 2区 生物学 Q1 ANTHROPOLOGY
Alannah Pearson, P David Polly
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引用次数: 0

摘要

目的 智人社会复杂性的进化变化与大脑绝对大小的增加有关。颞叶位于头骨的中间颅窝(MCF),其尺寸可用于估算现生和化石类群的颞叶体积(TLV)。材料与方法 本研究的主要目的是确定在类人动物系统发育过程中,颞叶大小的主要转变发生在哪里。我们使用头盖骨的计算机断层扫描(CT)、三维摄影测量数据和颅内铸模的激光表面扫描来测量 11 个现生类人类群的七个 MCF 指标,并使用多元回归来估计 5 个现生类人类群和 10 个化石类人类群的 TLV。系统发育比较方法将颞叶大小、大脑大小和颞叶比例映射到人科的广义系统发育树上,并特别映射到人科的系统发育树上。结果 现存智人在相对脑部大小、颞叶大小或颞叶比例方面并非离群者,但颞叶内的某些比例发生了独特的变化。颞叶相对大小和比例的最显著变化是,与其他现生类人猿和化石类人猿相比,潘属类人猿的颞叶相对大小和比例有所减小,而与智人属类人猿和包括现代人在内的其他现生类人猿相比,澳人-古人类支系的颞叶宽度和长度相对增加。讨论 我们没有发现对社会脑、环境或功能性颅骨学假说的单独支持,但认为在这些假说的背景下考虑颞叶和大脑其他区域之间的大脑重组的影响是审慎的,未来的研究是有必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporal lobe evolution in Hominidae and the origin of human lobe proportions.

Objectives Evolutionary changes in hominin social complexity have been associated with increases in absolute brain size. The temporal lobes are nestled in the middle cranial fossae (MCF) of the skull, the dimensions of which allow estimation of temporal lobe volume (TLV) in extant and fossil taxa. Materials and Methods The main aim of this study is to determine where along the hominid phylogeny, major temporal lobe size transitions occurred. We used computed tomography (CT) scans of crania, 3D photogrammetry data, and laser surface scans of endocranial casts to measure seven MCF metrics in 11 extant anthropoid taxa using multiple regressions to estimate TLV in 5 extant hominids and 10 fossil hominins. Phylogenetic comparative methods mapped temporal lobe size, brain size, and temporal lobe proportions onto phylogenetic trees broadly for Hominidae and specifically for Hominini. Results Extant Homo sapiens were not an outlier in relative brain size, temporal lobe size, or proportions of the temporal lobes, but some proportions within the lobe were uniquely altered. The most notable changes in relative temporal lobe size and proportions saw a decrease in relative temporal lobe size and proportions in the genus Pan compared to other extant great apes and fossil hominins while there was a relative increase in the temporal lobe width and length in Australopithecus-Paranthropus clade compared to the genus Homo and other extant great apes including modern humans. Discussion We do not find support for the social brain, environmental or functional craniology hypotheses alone but think it prudent to consider the implications of cerebral reorganization between the temporal lobes and other regions of the brain within the context of these hypotheses and with future investigation is warranted.

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