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缝线在猕猴颅有限元模型生物力学动态模拟中的作用:对颅面形态进化的启示。

The role of the sutures in biomechanical dynamic simulation of a macaque cranial finite element model: implications for the evolution of craniofacial form.

机构信息

Division of Basic Medical Sciences, Mercer University School of Medicine, Macon, Georgia, USA.

出版信息

Anat Rec (Hoboken). 2012 Feb;295(2):278-88. doi: 10.1002/ar.21532. Epub 2011 Dec 20.

DOI:10.1002/ar.21532
PMID:22190334
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3365596/
Abstract

The global biomechanical impact of cranial sutures on the face and cranium during dynamic conditions is not well understood. It is hypothesized that sutures act as energy absorbers protecting skulls subjected to dynamic loads. This hypothesis predicts that sutures have a significant impact on global patterns of strain and cranial structural stiffness when analyzed using dynamic simulations; and that this global impact is influenced by suture material properties. In a finite element model developed from a juvenile Rhesus macaque cranium, five different sets of suture material properties for the zygomaticotemporal sutures were tested. The static and dynamic analyses produced similar results in terms of strain patterns and reaction forces, indicating that the zygomaticotemporal sutures have limited impact on global skull mechanics regardless of loading design. Contrary to the functional hypothesis tested in this study, the zygomaticotemporal sutures did not absorb significant amounts of energy during dynamic simulations regardless of loading speed. It is alternatively hypothesized that sutures are mechanically significant only insofar as they are weak points on the cranium that must be shielded from unduly high stresses so as not to disrupt vitally important growth processes. Thus, sutural and overall cranial form in some vertebrates may be optimized to minimize or otherwise modulate sutural stress and strain.

摘要

颅缝在动态条件下对面部和颅骨的全球生物力学影响尚未得到很好的理解。有人假设,在承受动态载荷时,颅缝充当能量吸收器,以保护颅骨。该假设预测,在使用动态模拟进行分析时,颅缝会对整体应变模式和颅骨结构刚度产生重大影响;并且这种整体影响受颅缝材料特性的影响。在从幼年恒河猴颅骨开发的有限元模型中,测试了五种不同的颧骨颞缝的颅缝材料特性。静态和动态分析在应变模式和反作用力方面产生了相似的结果,表明颧骨颞缝无论加载设计如何,对整体颅骨力学的影响都有限。与本研究中测试的功能假设相反,颧骨颞缝在动态模拟中无论加载速度如何都没有吸收大量能量。另一种假设是,颅缝只有在它们是颅骨上的薄弱点时才具有机械意义,必须保护这些薄弱点免受过高的应力,以免破坏至关重要的生长过程。因此,某些脊椎动物的颅缝和整体颅骨形态可能经过优化,以最小化或调节颅缝的应力和应变。

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