Pryor McIntosh Leslie, Strait David S, Ledogar Justin A, Smith Amanda L, Ross Callum F, Wang Qian, Opperman Lynne A, Dechow Paul C
School of Science and Mathematics, Abraham Baldwin Agricultural College, Tifton, Georgia, 31793.
Department of Anthropology, Washington University in St. Louis, St. Louis, Missouri, 63130.
Anat Rec (Hoboken). 2016 Dec;299(12):1704-1717. doi: 10.1002/ar.23499.
The internal and external anatomy of the primate zygoma is central to orofacial function, health, and disease. The importance of variation in its gross morphology across extinct and extant primate forms has been established using finite element analysis, but its internal structure has yet to be explored. In this study, µCT is used to characterize trabecular bone morphometry in two separate regions of the zygoma of humans and Pan. Trabecular anisotropy and orientation are compared with strain orientations observed in trabecular regions of finite element models of four Pan crania. The results of this study show that trabecular bone morphometry, anisotropy, and orientation are highly compatible with strain orientation and magnitude in the finite element models. Trabecular bone in the zygoma is largely orthotropic (with bone orientation differing in three mutually orthogonal directions), with its primary orientation lying in the mediolateral direction. Trabecular bone in the zygomatic region appears to be highly influenced by the local strain environment, and thus may be closely linked to orofacial function. Anat Rec, 299:1704-1717, 2016. © 2016 Wiley Periodicals, Inc.
灵长类动物颧骨的内部和外部解剖结构对于口腔面部功能、健康和疾病至关重要。利用有限元分析已经证实了已灭绝和现存灵长类动物形态中其总体形态变化的重要性,但其内部结构尚未得到探索。在本研究中,使用µCT来表征人类和潘氏(Pan)颧骨两个不同区域的小梁骨形态测量学特征。将小梁各向异性和方向与四个潘氏颅骨有限元模型小梁区域中观察到的应变方向进行比较。本研究结果表明,小梁骨形态测量学、各向异性和方向与有限元模型中的应变方向和大小高度吻合。颧骨中的小梁骨在很大程度上是正交各向异性的(骨方向在三个相互正交的方向上不同),其主要方向位于内外侧方向。颧骨区域的小梁骨似乎受到局部应变环境的高度影响,因此可能与口腔面部功能密切相关。《解剖学记录》,299:1704 - 1717,2016年。© 2016威利期刊公司。