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首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >A Method for Material Parameter Determination for the Human Mandible Based on Simulation and Experiment
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A Method for Material Parameter Determination for the Human Mandible Based on Simulation and Experiment

机译:基于仿真与实验的人体下颌骨材料参数确定方法

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In cranio-maxillofacial surgery planning and implant design, it is important to know the elastic response of the mandible to load forces as they occur, e.g., in biting. The goal of the present study is to provide a method for a quantitative determination of material parameters for the human jaw bone, whose values can, e.g., be used to devise a prototype plastic model for the mandible. Non-destructive load experiments are performed on a cadaveric mandible using a specially designed test bed. The identical physiological situation is simulated in a computer program. The underlying mathematical model is based on a two component, linear elastic material law. The numerical realization of the model, difficult due to the complex geometry and morphology of the mandible, is via the finite element (FE) method. Combining the validated simulation with the results of the tests, an inverse problem for the determination of Young's modulus and the Poisson ratio of both cortical and cancellous bone can then be solved.
机译:在颅颌面外科手术计划和植入物设计中,重要的是要知道下颌骨在发生例如咬合时对加载力的弹性响应。本研究的目的是提供一种定量确定人类颌骨的材料参数的方法,其值例如可以用于设计下颌骨的原型塑料模型。使用特殊设计的测试床在尸体下颌骨上进行无损负荷实验。在计算机程序中模拟相同的生理情况。基本的数学模型基于线性弹性材料定律两部分。由于下颌骨的几何形状和形态复杂,很难通过有限元(FE)方法进行模型的数值实现。将经过验证的仿真与测试结果相结合,可以解决确定皮层和松质骨的杨氏模量和泊松比的反问题。

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