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介于两者之间:哺乳动物颧弓可塑性与功能的颅内视角

Betwixt and Between: Intracranial Perspective on Zygomatic Arch Plasticity and Function in Mammals.

作者信息

Franks Erin M, Holton Nathan E, Scott Jeremiah E, McAbee Kevin R, Rink Jason T, Pax Kazune C, Pasquinelly Adam C, Scollan Joseph P, Eastman Meghan M, Ravosa Matthew J

机构信息

Department of Biological Sciences, The University of Notre Dame, Notre Dame, Indiana.

Department of Orthodontics, The University of Iowa, Iowa City, Iowa.

出版信息

Anat Rec (Hoboken). 2016 Dec;299(12):1646-1660. doi: 10.1002/ar.23477.

Abstract

The zygomatic arch is morphologically complex, providing a key interface between the viscerocranium and neurocranium. It also serves as an attachment site for masticatory muscles, thereby linking it to the feeding apparatus. Though morphological variation related to differential loading is well known for many craniomandibular elements, the adaptive osteogenic response of the zygomatic arch remains to be investigated. Here, experimental data are presented that address the naturalistic influence of masticatory loading on the postweaning development of the zygoma and other cranial elements. Given the similarity of bone-strain levels among the zygoma and maxillomandibular elements, a rabbit and pig model were used to test the hypothesis that variation in cortical bone formation and biomineralization along the zygomatic arch and masticatory structures are linked to increased stresses. It was also hypothesized that neurocranial structures would be minimally affected by varying loads. Rabbits and pigs were raised for 48 weeks and 8 weeks, respectively. In both experimental models, CT analyses indicated that elevated masticatory loading did not induce differences in cortical bone thickness of the zygomatic arch, though biomineralization was positively affected. Hypotheses were supported regarding bone formation for maxillomandibular and neurocranial elements. Varying osteogenic responses in the arch suggests that skeletal adaptation, and corresponding variation in performance, may reside differentially at one level of bony architecture. Thus, it is possible that phenotypic diversity in the mammalian zygoma is due more singularly to natural selection (vs. plasticity). These findings underscore the complexity of the zygomatic arch and, more generally, determinants of skull form. Anat Rec, 299:1646-1660, 2016. © 2016 Wiley Periodicals, Inc.

摘要

颧弓形态复杂,是面颅与脑颅之间的关键界面。它也是咀嚼肌的附着部位,从而将其与进食器官相连。尽管许多颅下颌骨元素因不同负荷而产生的形态变化已为人熟知,但颧弓的适应性成骨反应仍有待研究。本文展示了实验数据,探讨咀嚼负荷对断奶后颧骨及其他颅骨元素发育的自然影响。鉴于颧骨与上颌下颌骨元素之间骨应变水平相似,使用兔和猪模型来检验以下假设:沿颧弓和咀嚼结构的皮质骨形成和生物矿化变化与应力增加有关。还假设脑颅结构受不同负荷的影响最小。兔和猪分别饲养48周和8周。在两个实验模型中,CT分析表明,尽管生物矿化受到积极影响,但咀嚼负荷增加并未导致颧弓皮质骨厚度出现差异。关于上颌下颌骨和脑颅元素的骨形成假设得到了支持。颧弓中不同的成骨反应表明,骨骼适应以及相应的性能变化可能在骨结构的一个层面上存在差异。因此,哺乳动物颧骨的表型多样性可能更单一地归因于自然选择(而非可塑性)。这些发现强调了颧弓的复杂性,更普遍地说,强调了颅骨形态的决定因素。《解剖学记录》,299:1646 - 1660,2016年。© 2016威利期刊公司。

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