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首页> 外文期刊>Clinical biomechanics >A novel fixation system for sacroiliac dislocation fracture: Internal fixation system design and biomechanics analysis
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A novel fixation system for sacroiliac dislocation fracture: Internal fixation system design and biomechanics analysis

机译:sa关节脱位骨折的新型固定系统:内固定系统设计和生物力学分析

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摘要

Background Although there were many different types of fixation techniques for sacroiliac dislocation fracture, the treat remained challenging in posterior pelvic ring injury. The purpose of this study was to evaluate the biomechanical effects of a novel fixation system we designed. Methods 12 human cadavers (L3-pelvic-femora) were used to compare biomechanical stability after reconstruction on the same specimens in four conditions: (1) intact, (2) cable system, (3) plate-pedicle screw system, and (4) cable system and plate-pedicle screw combination system (combination system). Biomechanical testing was performed on a material testing machine for evaluating the stiffness of the pelvic fixation construct in compression and torsion. Finding The cable system and plate-pedicle screw system alone may be insufficient to resist vertical shearing and rotational loads; however the combination system for unstable sacroiliac dislocation fractures provided significantly greater stability than single plate-pedicle or cable fixation system. Interpretation The novel fixation system for unstable sacroiliac dislocation fractures produced sufficient stability in axial compression and axial rotation test in type C pelvic ring injuries. It may also offer a better solution for sacroiliac dislocation fractures.
机译:背景尽管Although骨脱位骨折有许多不同类型的固定技术,但该方法在骨盆后环损伤中仍然具有挑战性。这项研究的目的是评估我们设计的新型固定系统的生物力学效果。方法使用12名人体尸体(L3-骨盆-股骨)比较在以下四个条件下对相同标本进行重建后的生物力学稳定性:(1)完整,(2)电缆系统,(3)椎弓根螺钉系统和(4) )电缆系统和椎弓根螺钉的结合系统(结合系统)。在材料测试机上进行生物力学测试,以评估骨盆固定结构在受压和扭转时的刚度。发现仅电缆系统和椎弓根螺钉系统可能不足以抵抗垂直剪切和旋转载荷。然而,用于unstable关节不稳定脱位骨折的联合系统比单板椎弓根或缆索固定系统具有更高的稳定性。解释新型unstable骨不稳定脱位骨折固定系统在C型骨盆环损伤的轴向压缩和轴向旋转测试中具有足够的稳定性。它也可以为sa脱位骨折提供更好的解决方案。

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