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Experimentally based numerical models and numerical simulation with parameter identification of human lumbar FSUs in traction

机译:基于实验的数值模型和带牵引力的人腰FSU参数识别的数值模拟

摘要

Numerical simulation of the behaviour of human lumbar spine segments, moreover, parameter-identification of the component organs of human lumbar FSUs are presented inudtraction therapies, by using FEM analysis. First, a simple 2D model, than a refined 2D model, and finally a refined 3D model were applied for modeling lumbar FSUs. For global numerical simulation of traction therapies the material constants of component organs have been obtained from the international literature. For local parameter identificationudof the component organs, an interval of the possible material moduli has been considered for each organ, and the possible combinations of real moduli were obtained,udcontrolling the process by the measured global deformations. In this way, the efficiency of conservative traction therapies can be improved by offering new experimental tensile material parameters for the international spine research.
机译:腰椎节段的行为的数值模拟,此外,通过有限元分析,在拔除疗法中给出了人腰FSU的组成器官的参数识别。首先,将一个简单的2D模型(而不是精致的2D模型),最后将精致的3D模型应用于腰椎FSU建模。对于牵引疗法的整体数值模拟,已经从国际文献中获得了组成器官的材料常数。为了对局部器官进行局部参数识别,对每个器官考虑了可能的材料模量的间隔,并获得了实际模量的可能组合,从而通过测量的整体变形来控制过程。这样,可以通过为国际脊柱研究提供新的实验性抗张材料参数来提高保守牵引疗法的效率。

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  • 年度 2004
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  • 正文语种 {"code":"en","name":"English","id":9}
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