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东非狒狒(埃及狒狒)的节段形态测量学:从出生到成年的纵向研究。

Segmental morphometrics of the olive baboon (Papio anubis): a longitudinal study from birth to adulthood.

作者信息

Druelle François, Aerts Peter, D'Août Kristiaan, Moulin Valérie, Berillon Gilles

机构信息

Laboratory for Functional Morphology, Biology Department, University of Antwerp, Antwerp, Belgium.

Département de Préhistoire, Musée de l'Homme, UMR 7194 CNRS-MNHN, Paris, France.

出版信息

J Anat. 2017 Jun;230(6):805-819. doi: 10.1111/joa.12602. Epub 2017 Mar 14.

Abstract

The linear dimensions and inertial characteristics of the body are important in locomotion and they change considerably during the ontogeny of animals, including humans. This longitudinal and ontogenetic study has produced the largest dataset to date of segmental morphometrics in a Catarrhini species, the olive baboon. The objectives of the study were to quantify the changes in body linear and inertial dimensions and to explore their (theoretical) mechanical significance for locomotion. We took full-body measurements of captive individuals at regular intervals. Altogether, 14 females and 16 males were followed over a 7-year period, i.e. from infancy to adulthood. Our results show that individual patterns of growth are very consistent and follow the general growth pattern previously described in olive baboons. Furthermore, we obtained similar growth curve structures for segment lengths and masses, although the respective time scales were slightly different. The most significant changes in body morphometrics occurred during the first 2 years of life and concerned the distal parts of the body. Females and males were similar in size and shape at birth. The rate and duration of growth produced substantial size-related differences throughout ontogeny, while body shapes remained very similar between the sexes. We also observed significant age-related variations in limb composition, with a proximal shift of the centre of mass within the limbs, mainly due to changes in mass distribution and in the length of distal segments. Finally, we observed what we hypothesize to be 'early biomechanical optimization' of the limbs for quadrupedal walking. This is due to a high degree of convergence between the limbs' natural pendular periods in infants, which may facilitate the onset of quadrupedal walking. Furthermore, the mechanical significance of the morphological changes observed in growing baboons may be related to changing functional demands with the onset of autonomous (quadrupedal) locomotion. From a wider perspective, these data provide unique insights into questions surrounding both the processes of locomotor development in primates and how these processes might evolve.

摘要

身体的线性尺寸和惯性特征在运动中很重要,并且在包括人类在内的动物个体发育过程中会发生相当大的变化。这项纵向和个体发育研究产生了迄今为止关于狭鼻猿类物种——橄榄狒狒——的节段形态测量学的最大数据集。该研究的目的是量化身体线性和惯性尺寸的变化,并探讨它们对运动的(理论)力学意义。我们定期对圈养个体进行全身测量。在7年的时间里,总共跟踪了14只雌性和16只雄性个体,即从婴儿期到成年期。我们的结果表明,个体的生长模式非常一致,并且遵循先前在橄榄狒狒中描述的一般生长模式。此外,我们获得了节段长度和质量的相似生长曲线结构,尽管各自的时间尺度略有不同。身体形态测量学中最显著的变化发生在生命的头两年,并且与身体的远端部分有关。雌性和雄性在出生时大小和形状相似。生长的速率和持续时间在整个个体发育过程中产生了与大小相关的显著差异,而两性之间的身体形状仍然非常相似。我们还观察到肢体组成与年龄相关的显著变化,肢体质心向近端移动,主要是由于质量分布和远端节段长度的变化。最后,我们观察到我们假设的四肢用于四足行走的“早期生物力学优化”。这是由于婴儿四肢自然摆动周期之间的高度一致性,这可能有助于四足行走的开始。此外,在成长中的狒狒身上观察到的形态变化的力学意义可能与自主(四足)运动开始时功能需求的变化有关。从更广泛的角度来看,这些数据为围绕灵长类动物运动发育过程以及这些过程可能如何进化的问题提供了独特的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd65/5442150/cbeda2708ff4/JOA-230-805-g001.jpg

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