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Sacral fixation technique in lumbosacral fusion.

机译:腰s融合术中的骨固定技术。

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STUDY DESIGN: Servohydraulic load displacement testing was used to study the biomechanical properties of sacral fixation in human cadaveric specimens. OBJECTIVES: To evaluate a modification of standard sacral fixation that uses the first dorsal sacral foramina as an adjunct location for the placement of a sacral hook in addition to S1 pedicle screws. BACKGROUND DATA: The stiffness or rigidity of an instrumentation construct governs the amount of relative movement allowed between motion segments undergoing fusion. This property provides the greatest influence over the mechanical conditions necessary for fusion to occur. METHODS: Sixteen human cadaveric specimens were divided into two groups with similar bone density assessed by quantitative computed tomography scan. All were instrumented with pedicle screws at L4 and S1. One group also had downgoing offset hooks in the first sacral foramina distracted against the S1 pedicle screw. Instron servohydraulic testing was performed in anterior compressive flexion, and load displacement curves were recorded. RESULTS: The bending stiffness of the specimens instrumented with screw and hook was significantly higher than in those instrumented with pedicle screws alone. The ultimate strength and energy absorbed did not differ between the two groups. CONCLUSIONS: The addition of sacral foraminal hooks to standard pedicle screw instrumentation constructs across the lumbosacral junction provides more rigid stabilization of the lumbosacral motion segment in this model.
机译:研究设计:伺服液压负载位移测试用于研究human体标本中of骨固定的生物力学特性。目的:评估标准standard骨固定的改良方法,该方法使用第一个背侧rs骨孔作为除S1椎弓根螺钉之外的the骨钩放置位置。背景数据:仪器结构的刚度或刚度决定着进行融合的运动段之间允许的相对运动量。该特性对发生融合所必需的机械条件具有最大的影响。方法:将16具人体尸体标本分为两组,采用定量计算机断层扫描技术评估骨密度。所有患者均在L4和S1处用椎弓根螺钉器械固定。一组在第一骨孔中还有向下的偏置钩,分散在S1椎弓根螺钉上。在前压缩屈曲中进行Instron伺服液压测试,并记录载荷位移曲线。结果:用螺钉和钩子钩扎的标本的抗弯刚度明显高于仅用椎弓根螺钉的标本。两组之间的极限强度和吸收的能量没有差异。结论:在腰model连接处向标准椎弓根螺钉器械结构中添加of骨椎间孔钩可在该模型中提供更牢固的腰s运动节段稳定性。

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