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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Impact of material properties of intervertebral disc on dynamic response of the human lumbar spine to vertical vibration: a finite element sensitivity study
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Impact of material properties of intervertebral disc on dynamic response of the human lumbar spine to vertical vibration: a finite element sensitivity study

机译:椎间盘对人腰椎动态响应对垂直振动的影响:有限元灵敏度研究

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摘要

This study aimed to determine the effect of variations in material properties of the intervertebral disc on dynamic response of the human lumbar spine to vertical vibration using a finite element model of the lumbar L1-S1 motion segment. The present material sensitivity study was conducted by varying elastic moduli for annulus ground substance (AGS), annulus fibers (AF), and nucleus pulposus (NP) in the disc. Transient dynamic analysis was performed initially on the model with basic material property under a sinusoidal vertical vibration load. Subsequently, the same analysis was done for each of the three disc components corresponding to high and low material property cases. The computed results were plotted as a function of time and compared. The AGS property displayed a larger impact on vertebral axial displacement and von Mises stress in AGS, and the AF property displayed a larger impact on disc bulge. In contrast, the NP property had little effect on all the response parameters. Additionally, the intradiscal pressure was found to be not sensitive to any of the disc properties. These findings may be helpful in adoption of appropriate material parameters for the intervertebral disc in finite element model of the lumbar spine used for vibration analysis.
机译:该研究旨在确定椎间盘材料特性的变化对使用腰L1-S1运动段的有限元模型对人腰椎对垂直振动的动态响应的影响。通过在盘中改变环状地面物质(AGS),环纤维(AF)和核瓜素(NP)中的弹性模量来进行本材料敏感性研究。最初在正弦垂直振动载荷下最初对具有基本材料特性的模型进行瞬态动态分析。随后,对应于高材料性能和低材料性能的三个盘组件中的每一个进行相同的分析。计算结果作为时间的函数绘制。 AGS属性对椎体轴向位移和AGS中的von误解压力显示出更大的影响,AF属性对圆盘凸起显示出更大的影响。相比之下,NP属性对所有响应参数几乎没有影响。另外,发现体内压力对任何盘性质不敏感。这些发现可以有助于采用用于振动分析的腰椎有限元模型中的椎间盘的适当材料参数。

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