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首页> 外文期刊>Journal of Anatomy >The impact of bone and suture material properties on mandibular function in Alligator mississippiensis: testing theoretical phenotypes with finite element analysis.
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The impact of bone and suture material properties on mandibular function in Alligator mississippiensis: testing theoretical phenotypes with finite element analysis.

机译:密西西比短吻鳄的骨骼和缝合材料特性对下颌功能的影响:用有限元分析测试理论表型。

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The functional effects of bone and suture stiffness were considered here using finite element models representing three different theoretical phenotypes of an Alligator mississippiensis mandible. The models were loaded using force estimates derived from muscle architecture in dissected specimens, constrained at the 18th and 19th teeth in the upper jaw and 19th tooth of the lower jaw, as well as at the quadrate-articular joint. Stiffness was varied systematically in each theoretical phenotype. The three theoretical phenotypes included: (i) linear elastic isotropic bone of varying stiffness and no sutures; (ii) linear elastic orthotropic bone of varying stiffness with no sutures; and (iii) linear elastic isotropic bone of a constant stiffness with varying suture stiffness. Variation in the isotropic material properties of bone primarily resulted in changes in the magnitude of principal strain. By comparison, variation in the orthotropic material properties of bone and isotropic material properties of sutures resulted in: a greater number of bricks becoming either more compressive or more tensile, changing between being either dominantly compressive or tensile, and having larger changes in the orientation of maximum principal strain. These data indicate that variation in these model properties resulted in changes to the strain regime of the model, highlighting the importance of using biologically verified material properties when modeling vertebrate bones. When bones were compared within each set, the response of each to changing material properties varied. In two of the 12 bones in the mandible, varied material properties within sutures resulted in a decrease in the magnitude of principal strain in bricks adjacent to the bone/suture interface and decreases in stored elastic energy. The varied response of the mandibular bones to changes in suture stiffness highlights the importance of defining the appropriate functional unit when addressing relationships of performance and morphology.
机译:在这里,使用代表密西西比鳄鱼皮下颌骨的三种不同理论表型的有限元模型来考虑骨骼的功能效果和缝合线刚度。使用从解剖样本中的肌肉结构得出的力估算值加载模型,约束力分别约束在上颌的第18和19齿,下颌的第19齿以及四边形关节处。每种理论表型的刚度都有系统地变化。三种理论表型包括:(i)刚度变化且没有缝合的线性弹性各向同性骨; (ii)刚度不同,没有缝合的线性弹性正交各向异性骨; (iii)具有恒定刚度且具有不同缝合线刚度的线性弹性各向同性骨。骨各向同性材料特性的变化主要导致主应变大小的变化。相比之下,骨骼的正交异性材料特性和缝线的各向同性材料特性变化导致:大量砖变得更具压缩性或拉伸性,在占主导地位的压缩性或拉伸性之间变化,并且砖的方向变化较大最大主应变。这些数据表明,这些模型属性的变化导致模型的应变方式发生变化,从而突出了在对脊椎动物骨骼进行建模时使用经过生物学验证的材料属性的重要性。当在每组骨骼中进行比较时,每种骨骼对不断变化的材料特性的反应都不同。在下颌骨的12根骨头中,有2根在缝合线内变化的材料特性导致与骨头/缝合线界面相邻的砖块中主应变的大小减小,并且所存储的弹性能降低。下颌骨对缝合线刚度变化的不同反应突出了在解决性能和形态之间的关系时定义适当功能单元的重要性。

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