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The effect of soft tissue properties on overall biomechanical response of a human lumbar motion segment: A preliminary finite element study

机译:软组织特性对人体腰椎运动段总体生物力学响应的影响:初步有限元研究

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摘要

Finite element (FE) modelling is a popular numerical method used to study the biomechanics of the spine. Existing FE models have been used to investigate the effects of tissue degeneration, fixation implants and vertebral fractures. However, a wide range of geometric and material properties have been used to represent the soft tissues of the spne, and there is no consensus on the best approach for soft tissue modelling, or the relative importance of various soft tissues in governing the biomechanics of the motion segments. This study investigates the relative effect of soft tissue properties on the overall response of a human spinal motion segment using an osseo-ligamentous FE model of the Visible Man L3-L4 intervertebral joint.udThe results from this study demonstrate that some soft tissue structures are more critical than others in determining the characteristic behaviour of the spine. Correct representation of the mechanical properties of both the capsular ligament and anular fibres is most important in generating realistic FE models of the lumbar spine to predict motion segment biomechanics.
机译:有限元(FE)建模是一种流行的数值方法,用于研究脊柱的生物力学。现有的有限元模型已用于研究组织变性,固定植入物和椎骨骨折的影响。但是,已经使用了广泛的几何和材料特性来表示脊柱的软组织,并且对于软组织建模的最佳方法或控制软组织的生物力学的相对重要性,尚无共识。运动段。这项研究使用可见韧带L3-L4椎间关节的骨韧带有限元模型研究软组织特性对人脊柱运动节段整体响应的相对影响。 ud这项研究的结果表明,某些软组织结构是在确定脊柱的特征性行为方面比其他方法更为关键。在生成逼真的腰椎有限元模型以预测运动节段生物力学时,正确表示囊膜韧带和肛门纤维的机械性能最为重要。

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