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动态有限元模拟揭示了复杂的人类分娩模式的早期起源。

Dynamic finite-element simulations reveal early origin of complex human birth pattern.

机构信息

UMR 7268 ADES, Aix Marseille University, EFS, CNRS, 51 boulevard Pierre Dramard, 13344, Marseille cedex 15, France.

Aix Marseille University, School of Midwifery, Faculty of Medical and Paramedical Sciences, 51 boulevard Pierre Dramard, 13344, Marseille cedex 15, France.

出版信息

Commun Biol. 2022 Apr 19;5(1):377. doi: 10.1038/s42003-022-03321-z.

Abstract

Human infants are born neurologically immature, potentially owing to conflicting selection pressures between bipedal locomotion and encephalization as suggested by the obstetrical dilemma hypothesis. Australopithecines are ideal for investigating this trade-off, having a bipedally adapted pelvis, yet relatively small brains. Our finite-element birth simulations indicate that rotational birth cannot be inferred from bony morphology alone. Based on a range of pelvic reconstructions and fetal head sizes, our simulations further imply that australopithecines, like humans, gave birth to immature, secondary altricial newborns with head sizes smaller than those predicted for non-human primates of the same body size especially when soft tissue thickness is adequately approximated. We conclude that australopithecines required cooperative breeding to care for their secondary altricial infants. These prerequisites for advanced cognitive development therefore seem to have been corollary to skeletal adaptations for bipedal locomotion that preceded the appearance of the genus Homo and the increase in encephalization.

摘要

人类婴儿在神经上尚未成熟,这可能是由于双足运动和脑化之间的冲突选择压力,这一观点被产科困境假说所提出。南方古猿是研究这种权衡的理想模型,因为它们的骨盆适应了双足行走,但其大脑相对较小。我们的有限元分娩模拟表明,不能仅从骨骼形态推断旋转分娩。基于一系列骨盆重建和胎儿头部大小的模拟,我们进一步表明,南方古猿与人类一样,分娩出不成熟的、次生早产儿,其头部大小小于同体型非人类灵长类动物的预测值,尤其是当软组织厚度得到充分估计时。我们的结论是,南方古猿需要合作繁殖来照顾他们的次生早产儿。因此,这些高级认知发展的前提似乎与双足运动的骨骼适应有关,这种适应先于人类属的出现和脑化的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b8e/9018746/e02693ea71fd/42003_2022_3321_Fig1_HTML.jpg

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