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Biomechanical evaluation of bending strength of spinal pedicle screws, including cylindrical, conical, dual core and double dual core designs using numerical simulations and mechanical tests

机译:使用数值模拟和力学测试评估椎弓根螺钉的抗弯强度,包括圆柱,圆锥,双芯和双双芯设计的生物力学

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摘要

Pedicle screws are used for treating several types of spinal injuries. Although several commercial versions are presently available, they are mostly either fully cylindrical or fully conical. In this study, the bending strengths of seven types of commercial pedicle screws and a newly designed double dual core screw were evaluated by finite element analyses and biomechanical tests. All the screws had an outer diameter of 7. mm, and the biomechanical test consisted of a cantilever bending test in which a vertical point load was applied using a level arm of 45. mm. The boundary and loading conditions of the biomechanical tests were applied to the model used for the finite element analyses. The results showed that only the conical screws with fixed outer diameter and the new double dual core screw could withstand 1,000,000 cycles of a 50-500. N cyclic load. The new screw, however, exhibited lower stiffness than the conical screw, indicating that it could afford patients more flexible movements. Moreover, the new screw produced a level of stability comparable to that of the conical screw, and it was also significantly stronger than the other screws. The finite element analysis further revealed that the point of maximum tensile stress in the screw model was comparable to the point at which fracture occurred during the fatigue test.
机译:椎弓根螺钉用于治疗多种类型的脊柱损伤。尽管目前有几种商业版本,但它们大多是完全圆柱形或完全圆锥形的。在这项研究中,通过有限元分析和生物力学测试,评估了七种商用椎弓根螺钉和新设计的双双芯螺钉的抗弯强度。所有螺钉的外径为7.mm,生物力学测试包括悬臂弯曲测试,其中使用45.mm的水平臂施加垂直点载荷。将生物力学测试的边界和载荷条件应用于用于有限元分析的模型。结果表明,只有具有固定外径的圆锥形螺钉和新型双双芯螺钉才能承受50-500的1,000,000次循环。 N循环载荷。但是,新螺钉的刚度比锥形螺钉低,这表明它可以为患者提供更灵活的运动。此外,新螺钉产生的稳定性可与锥形螺钉媲美,并且也比其他螺钉坚固得多。有限元分析进一步表明,螺钉模型中的最大拉应力点与疲劳测试过程中发生断裂的点相当。

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