利用二维轴对称有限元模型分析松质骨轴向拔出试验中半角对椎弓根螺钉位移的影响

Harikrishna Makaram, R. Swaminathan
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引用次数: 2

摘要

椎弓根螺钉固定常用于脊柱病变的治疗。为了有效治疗,螺钉与骨之间的稳定锚固是必要的。本研究采用二维轴对称有限元模型模拟了螺钉近端半角和远端半角对固定位移和应力传递的影响。通过将近端半角在0°和60°之间以10°的步骤变化,并将远端半角视为30°和40°,进行了参数化研究。在前人研究的基础上,应用了材料特性和边界条件。考虑骨与螺钉之间的摩擦接触。结果表明,固定位移在近半角0°时最小,在近半角60°时最大。在头几根线中观察到高应力集中,最大冯米塞斯应力在60°角处最高。近半角为40°和50°时,应力传递较高。观察到,这种方法可能有助于开发更好的椎弓根螺钉治疗脊柱侧凸。
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ANALYSIS ON THE EFFECT OF HALF ANGLE ON THE DISPLACEMENT OF PEDICLE SCREW DURING AXIAL PULL-OUT TEST IN CANCELLOUS BONE USING 2D AXISYMMETRIC FE MODEL
Pedicle screw fixations are commonly used in the treatment of spinal pathologies. For effective treatment, stable anchorage between the screw and bone is necessary. In this study, the influence of proximal and distal half angle of the screw, on the displacement of fixation and stress transfer are simulated using a 2D axisymmetric finite element model. A parametric study was performed by varying the proximal half-angle between 0° and 60° in steps of 10° and the distal half angles are considered as 30° and 40°. The material properties and boundary conditions are applied based on previous studies. Frictional contact is considered between the bone and screw. Results show that, displacement of fixation is observed to be minimum at a proximal half angle of 0° and maximum at an angle of 60°. High stress concentration is observed in first few threads with highest maximum von Mises stress at an angle of 60°. High stress transfer was obtained for proximal half-angles of 40° and 50°. It is observed that, this method might aid to develop better pedicle screws for treatment of Scoliosis.
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