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Biomechanical analysis of suture bridge fixation for tibial eminence fractures

机译:生物力学分析缝合固定的桥梁胫骨隆起骨折

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摘要

Purpose: To perform a biomechanical analysis of suture bridge fixation for tibial eminence fractures using PushLock anchors (Arthrex, Naples, FL) and compare it with traditional suture fixation and screw fixation. Methods: This study used 24 porcine knees, divided into 3 comparison fixation groups: PushLock suture bridge fixation, screw fixation, and suture fixation. Each knee was dissected of all soft tissue, leaving only the anterior cruciate ligament. A tibial eminence fracture was created with disruption of the posterior hinge, and each knee was fixed with a randomly assigned fixation technique. After fixation, each knee underwent 2 phases of biomechanical testing. The initial cyclic dynamic phase assessed the displacement change after 200 cycles (in millimeters) and initial stiffness (in Newtons per millimeter) of the fixation construct. After completion of dynamic testing, each specimen underwent a single tensile failure test load to assess ultimate failure load (in Newtons) and displacement (in millimeters) to ultimate failure. Results: There was a significant difference for the load-to-failure outcome variable among treatment groups (P =.004 by analysis of variance, 1 - β = 0.851). Mean ultimate failure load borne by the PushLock fixation group was statistically significantly higher in comparison with the screw (P =.007) and suture (P =.017) fixation groups. For the cyclical testing, the primary outcome variable of displacement change after 200 loading cycles failed to show a significant difference among the 3 groups (P =.412). Conclusions: Suture bridge fixation with PushLock anchors is a new and effective surgical technique for the treatment of displaced tibial eminence fractures. By use of a high-bone density animal model, our results suggest that this suture bridge construct provides superior fixation with regard to ultimate failure load compared with standard screw fixation and suture fixation. Clinical Relevance: The suture bridge technique provides another fixation option for displaced tibial eminence fractures with comparable, and in some instances superior, biomechanical properties to screw fixation and suture fixation.
机译:目的:进行生物力学分析缝合桥固定胫骨隆起骨折使用PushLock锚(Arthrex,那不勒斯,FL),比较它与传统缝合固定和螺钉固定。研究使用24猪膝盖,分为3比较固定组:PushLock缝合桥固定螺钉固定,缝合固定。组织,只留下前交叉韧带。的中断后铰链,每个用随机分配固定膝盖是固定的技术。生物力学测试的阶段。循环动态评估阶段位移200年之后改变周期(毫米)和初始刚度(牛顿/毫米)的固定结构。动态测试,每个标本进行了一个拉伸试验负荷评估最终失败破坏载荷(牛顿)和位移(在毫米)最终失败。的显著差异load-to-failure结果变量之间的治疗组(P =。0.851)。PushLock固定组在统计学上与螺杆相比显著提高(P = .007)和缝合(P = .017)固定组。对于周期性的测试,主要结果200加载后位移变化的变量周期未能表现出显著差异3组(P = .412)。桥与PushLock锚是一种新型固定和有效的外科技术卓越流离失所治疗胫骨骨折。通过使用high-bone密度动物模型,我们结果表明,这种缝合桥结构提供了优越的固定方面最终破坏载荷与标准螺钉固定和缝合固定。相关性:缝合技术提供了桥梁另一个固定选择流离失所的胫骨卓越骨折与可比,在一些实例优越,生物力学性能螺钉固定和缝合固定。

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