首页> 外文期刊>Journal of Biomechanics >Effect of a pedicle-screw-based motion preservation system on lumbar spine biomechanics: a probabilistic finite element study with subsequent sensitivity analysis.
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Effect of a pedicle-screw-based motion preservation system on lumbar spine biomechanics: a probabilistic finite element study with subsequent sensitivity analysis.

机译:基于椎弓根螺钉的运动保持系统对腰椎生物力学的影响:概率有限元研究,并随后进行敏感性分析。

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摘要

Pedicle-screw-based motion preservation systems are often used to support a slightly degenerated disc. Such implants are intended to reduce intradiscal pressure and facet joints forces, while having a minimal effect on the motion patterns. In a probabilistic finite element study with subsequent sensitivity analysis, the effects of 10 input parameters, such as elastic modulus and diameter of the elastic rod, distraction of the segment, level of bridged segments, etc. on the output parameters intervertebral rotations, intradiscal pressures, and facet joint forces were determined. A validated finite element model of the lumbar spine was employed. Probabilistic studies were performed for seven loading cases: upright standing, flexion, extension, left and right lateral bending and left and right axial rotation. The simulations show that intervertebral rotation angles, intradiscal pressures and facet joint forces are in most cases reduced by a motion preservation system. The influence on intradiscal pressure is small, except in extension. For many input parameter combinations, the values for intervertebral rotations and facet joint forces are very low, which indicates that the implant is too stiff in these cases. The output parameters are affected most by the following input parameters: loading case, elastic modulus and diameter of the elastic rod, distraction of the segment, and angular rigidity of the connection between screws and rod. The designated functions of a motion preservation system can best be achieved when the longitudinal rod has a low stiffness, and when the connection between rod and pedicle screws is rigid.
机译:基于椎弓根螺钉的运动保存系统通常用于支撑轻微退化的椎间盘。这种植入物旨在减少椎间盘内压力和小关节关节力,同时对运动模式的影响最小。在概率有限元研究和随后的灵敏度分析中,10个输入参数(例如弹性杆的弹性模量和直径,节段的分散度,桥接节段的水平等)对输出参数椎间旋转,椎间盘内压力的影响,并确定了小关节力。使用经过验证的腰椎有限元模型。对七个载荷情况进行了概率研究:直立站立,屈曲,伸展,左右侧弯以及左右轴向旋转。仿真表明,在大多数情况下,运动保持系统可降低椎间旋转角度,椎间盘内压力和小关节力。除扩展外,对椎间盘内压力的影响很小。对于许多输入参数组合,椎间旋转和小关节力的值非常低,这表明在这些情况下植入物太硬。输出参数受以下输入参数的影响最大:负载情况,弹性杆的弹性模量和直径,线段的张紧度以及螺钉与杆之间连接的角刚度。当纵向杆的刚性较低且杆与椎弓根螺钉之间的连接牢固时,可以最好地实现运动保持系统的指定功能。

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