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Mandibular corpus bone strain in goats and alpacas: Implications for understanding the biomechanics of mandibular form in selenodont artiodactyls

机译:山羊和羊驼中的下颌骨骨应变:对理解硒齿动io动物中下颌形态生物力学的启示

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摘要

The goal of this study is to clarify the functional and biomechanical relationship between jaw morphology and in vivo masticatory loading in selenodont artiodactyls. We compare in vivo strains from the mandibular corpus of goats and alpacas to predicted strain patterns derived from biomechanical models for mandibular corpus loading during mastication. Peak shear strains in both species average 600–700 µε on the working side and approximately 450 µε on the balancing side. Maximum principal tension in goats and alpacas is directed at approximately 30° dorsocaudally relative to the long axis of the corpus on the working side and approximately perpendicular to the long axis on the balancing side. Strain patterns in both species indicate primarily torsion of the working-side corpus about the long axis and parasagittal bending and/or lateral transverse bending of the balancing-side corpus. Interpretation of the strain patterns is consistent with comparative biomechanical analyses of jaw morphology suggesting that in goats, the balancing-side mandibular corpus is parasagittally bent whereas in alpacas it experiences lateral transverse bending. However, in light of higher working-side corpus strains, biomechanical explanations of mandibular form also need to consider that torsion influences relative corpus size and shape. Furthermore, the complex combination of loads that occur along the selenodont artiodactyl mandibular corpus during the power stroke has two implications. First, added clarification of these loading patterns requires in vivo approaches for elucidating biomechanical links between mandibular corpus morphology and masticatory loading. Second, morphometric approaches may be limited in their ability to accurately infer masticatory loading regimes of selenodont artiodactyl jaws.
机译:这项研究的目的是要弄清硒形态动颚中颚形态与体内咀嚼负荷之间的功能和生物力学关系。我们比较了从山羊和羊驼的下颌体的体内菌株与从咀嚼过程中下颌体负荷的生物力学模型得出的预测菌株模式。两个物种的峰值剪切应变在工作侧平均为600–700 µε,在平衡侧约为450 µε。山羊和羊驼的最大主张力在工作侧相对于relative体的长轴背向尾部约30°,而在平衡侧则垂直于长轴。两种物种中的应变模式主要表示工作侧主体的绕长轴的扭转以及平衡侧主体的矢状弯曲和/或横向弯曲。应变模式的解释与对颚形态的比较生物力学分析一致,这表明在山羊中,平衡侧下颌骨是旁突弯曲的,而在羊驼中,其侧向弯曲是横向的。但是,鉴于较高的工作侧语料库应变,对下颌形态的生物力学解释也需要考虑到扭转会影响相对语料库大小和形状。此外,在中风期间,沿着硒齿节肢动物下颌骨语料库发生的载荷的复杂组合具有两个含义。首先,要进一步澄清这些负荷模式,需要采用体内方法阐明下颌骨形态与咀嚼负荷之间的生物力学联系。其次,形态计量学方法可能无法准确推断硒齿类动植物颌骨的咀嚼负荷状态。

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