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脑膜中动脉的分形维数:直立人、尼安德特人和现代人类的变异与演化

Fractal dimension of the middle meningeal vessels: variation and evolution in Homo erectus, Neanderthals, and modern humans.

作者信息

Bruner Emiliano, Mantini Simone, Perna Agostino, Maffei Carlotta, Manzi Giorgio

机构信息

Dipartimento di Biologia Animale e dell'Uomo, Università La Sapienza, P.le A. Moro 5, 00185, Roma, Italy.

出版信息

Eur J Morphol. 2005 Oct-Dec;42(4-5):217-24. doi: 10.1080/09243860600746833.

Abstract

The middle meningeal vascular network leaves its traces on the endocranial surface because of the tight relationship between neurocranial development and brain growth. Analysing the endocast of fossil specimens, it is therefore possible to describe the morphology of these structures, leading inferences on the cerebral physiology and metabolism in extinct human groups. In this paper, general features of the meningeal vascular traces are described for specimens included in the Homo erectus, Homo neanderthalensis, and Homo sapiens hypodigms. The complexity of the arterial network is quantified by its fractal dimension, calculated through the box-counting method. Modern humans show significant differences from the other two taxa because of the anterior vascular dominance and the larger fractal dimension. Neither the fractal dimension nor the anterior development are merely associated with cranial size increase. Considering the differences between Neanderthals and modern humans, these results may be interpreted in terms of phylogeny, cerebral functions, or cranial structural network.

摘要

由于神经颅骨发育与脑生长之间的紧密关系,脑膜血管网络在颅内表面留下了痕迹。因此,通过分析化石标本的颅内模型,就有可能描述这些结构的形态,从而推断已灭绝人类群体的脑生理学和新陈代谢情况。在本文中,描述了直立人、尼安德特人和智人分类下标本的脑膜血管痕迹的一般特征。动脉网络的复杂性通过其分形维数来量化,该维数通过盒子计数法计算得出。现代人与其他两个分类群存在显著差异,原因在于前部血管优势以及更大的分形维数。分形维数和前部发育都不仅仅与颅骨大小的增加相关。考虑到尼安德特人和现代人类之间的差异,这些结果可以从系统发育、脑功能或颅骨结构网络的角度进行解释。

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