Püschel Thomas A, Sellers William I
Computational and Evolutionary Biology Group, Faculty of Life Sciences, University of Manchester, Manchester, M13 9PT, UK.
Am J Phys Anthropol. 2016 Feb;159(2):325-41. doi: 10.1002/ajpa.22882. Epub 2015 Oct 16.
The aim was to analyze the relationship between scapular form and function in hominoids by using geometric morphometrics (GM) and finite element analysis (FEA).
FEA was used to analyze the biomechanical performance of different hominoid scapulae by simulating static postural scenarios. GM was used to quantify scapular shape differences and the relationship between form and function was analyzed by applying both multivariate-multiple regressions and phylogenetic generalized least-squares regressions (PGLS).
Although it has been suggested that primate scapular morphology is mainly a product of function rather than phylogeny, our results showed that shape has a significant phylogenetic signal. There was a significant relationship between scapular shape and its biomechanical performance; hence at least part of the scapular shape variation is due to non-phylogenetic factors, probably related to functional demands.
This study has shown that a combined approach using GM and FEA was able to cast some light regarding the functional and phylogenetic contributions in hominoid scapular morphology, thus contributing to a better insight of the association between scapular form and function.
旨在通过使用几何形态测量学(GM)和有限元分析(FEA)来分析类人猿肩胛骨形态与功能之间的关系。
通过模拟静态姿势场景,使用有限元分析来分析不同类人猿肩胛骨的生物力学性能。使用几何形态测量学来量化肩胛骨形状差异,并通过应用多元多重回归和系统发育广义最小二乘回归(PGLS)来分析形态与功能之间的关系。
尽管有人认为灵长类动物的肩胛骨形态主要是功能而非系统发育的产物,但我们的结果表明形状具有显著的系统发育信号。肩胛骨形状与其生物力学性能之间存在显著关系;因此,至少部分肩胛骨形状变化是由于非系统发育因素,可能与功能需求有关。
本研究表明,使用几何形态测量学和有限元分析的联合方法能够揭示类人猿肩胛骨形态在功能和系统发育方面的贡献,从而有助于更好地理解肩胛骨形态与功能之间的关联。