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Biomechanical analysis of facet joint slippage of lumbosacral joints under static loadings

机译:静态载荷下腰s关节小关节滑移的生物力学分析

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In this study, three-dimensional laser scanning technology was employed to measure geometrical data of the human spine vertebrae. Based on the measured point-cloud data of the vertebra figuration, a detailed three-dimensional nonlinear finite element model of the lumbosacral joint L5-S1 of the spine was created and used to investigate the biomechanical properties of the lumbosacral joint. The finite element model was finely developed and validated according to available experimental results. The results show that facet articulations are important to stability of the lumbosacral joint. 1000N compressive force or 100N anterior force may yield the facet joint slippage for around 1mm and the facet contact surfaces may slip for around 2.8mm under both of 10Nm extension moment and 1000N compressive force. The finite element model might provide a detailed and accurate computational model for biomechanical analyses of the lumbosacral joint and studies of relative instrument implant and individual design of instruments.
机译:在这项研究中,采用了三维激光扫描技术来测量人体脊椎的几何数据。基于所测得的椎骨形态的点云数据,建立了腰关节L5-S1的详细三维非线性有限元模型,并用于研究腰investigate关节的生物力学特性。根据可获得的实验结果,精细开发并验证了有限元模型。结果表明,小关节对于腰s关节的稳定性很重要。在10Nm的拉伸力矩和1000N的压缩力下,1000N的压缩力或100N的前向力可能会导致小关节滑动约1mm,小平面接触表面可能会滑动约2.8mm。有限元模型可能为腰s关节的生物力学分析以及相关器械植入物和器械的个性化设计研究提供详细而准确的计算模型。

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