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首页> 外文期刊>Journal of Biomechanics >Analysis of the influence of disc degeneration on the mechanical behaviour of a lumbar motion segment using the finite element method.
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Analysis of the influence of disc degeneration on the mechanical behaviour of a lumbar motion segment using the finite element method.

机译:使用有限元方法分析椎间盘退变对腰椎运动节段力学行为的影响。

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摘要

Compared to a healthy intervertebral disc, the geometry and the material properties of the involved tissues are altered in a degenerated disc. It is not completely understood how this affects the mechanical behaviour of a motion segment. In order to study the influence of disc degeneration on motion segment mechanics a three-dimensional, nonlinear finite element model of the L3/L4 functional unit was used. Different grades of disc degeneration were simulated by varying disc height and bulk modulus of the nucleus pulposus. The model was loaded with pure moments of 10Nm in the three main anatomic planes. The finite element model predicted the same trends for intersegmental rotation and intradiscal pressure as described in the literature for in vitro studies. A comparison between calculated intersegmental rotation and experimental data showed a mean difference of 1.9 degrees while the mean standard deviation was 2.5 degrees . A mildly degenerated disc increases intersegmental rotation for all loading cases. With further increasing disc degeneration intersegmental rotation is decreased. For axial rotation the decrease takes place in the final stage. Intradiscal pressure is lower while facet joint force and maximum von Mises stress in the annulus are higher in a degenerated compared to a healthy disc.
机译:与健康的椎间盘相比,在退化的椎间盘中,受累组织的几何形状和材料特性发生了变化。尚不完全了解这如何影响运动段的机械行为。为了研究椎间盘退变对运动节段力学的影响,使用了L3 / L4功能单元的三维非线性有限元模型。通过改变椎间盘髓核的椎间盘高度和体积模量来模拟不同等级的椎间盘退变。该模型在三个主要解剖平面中加载了10Nm的纯弯矩。有限元模型预测的节段间旋转和椎间盘内压的趋势与体外研究文献中所述的趋势相同。计算的节间旋转与实验数据的比较显示,平均差异为1.9度,平均标准偏差为2.5度。对于所有载荷情况,轻度退化的椎间盘都会增加节间旋转。随着椎间盘退变的进一步增加,节间旋转减少。对于轴向旋转,减小发生在最后阶段。与健康椎间盘相比,变性时的椎间盘内压力较低,而小关节上的关节力和最大von Mises应力较高。

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