The variation of the cross-sectional shape in the long bones of birds and mammals

Jorge Cubo, Adrià Casinos
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引用次数: 30

Abstract

The transverse and sagittal diameters of the long bones were measured in a sample of 53 species of eutherian mammals and 36 species of birds. The scaling of the transverse and sagittal diameters of each bone to body mass was calculated. For each bone the ratio of sagittal/transverse diameter was calculated, as an expression of the cross-sectional shape of the bones. The distributions of the ratios were not significantly different from normality in all the avian bones and in the mammalian femur and tibia. In most cases, the mean of the distribution was significantly different from 1 (circular shape). The analysis shows that changes in the ratio can be caused by selective factors, considering the correlation predicted between the breaking moments and the radii, but at the same time the cross-sectional shape of mammalian and avian long bones may have a phylogenetic basis. Finally, the previous assumption of relationship between bone curvature and stress predictability, is also discussed.

鸟类和哺乳动物长骨的横截面形状的变化
在53种真兽哺乳动物和36种鸟类的样本中测量了长骨的横向和矢状直径。计算每根骨头的横向和矢状直径与体重的比例。对于每个骨头,矢状直径/横向直径的比值被计算,作为骨头的横截面形状的表达式。所有鸟类骨骼和哺乳动物股骨、胫骨的比例分布与正常情况无显著差异。在大多数情况下,分布的平均值与1(圆形)有显著差异。分析表明,考虑到断裂力矩与半径之间预测的相关性,该比值的变化可能是由选择因素引起的,但与此同时,哺乳动物和鸟类长骨的横截面形状可能具有系统发育基础。最后,对骨曲率与应力可预测性之间关系的假设进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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