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Vertebrectomy Model for the Mechanical Assessment of Fusionless Scoliosis Growth Rods

机译:椎骨切除模型用于无融合性脊柱侧弯生长杆的机械评估

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Fusionless scoliosis growth rod systems pose many challenges to benchtop biomechanical testing. This study was conducted in order to develop a vertebrectomy model capable of evaluating shear/corrective reduction forces, anterior/posterior load sharing, and long term fatigue properties of these systems. Portions of ASTM F1717 and ISO 12189 were used to develop a custom dynamic construct. Results from the corrective/shear reduction force test demonstrate an expected reduced shear/corrective force at the completion of fatigue testing. Additionally, a bimodal force-displacement curve was demonstrated during confined static compression testing, indicating an anterior/posterior load sharing function of the system. Fatigue testing of the dynamic construct demonstrated the potential to develop a fatigue curve and endurance limit of a growth rod system. Moreover, fatigue testing replicated common in vivo failures. The complexities of scoliosis treatment make the definition of a standardized construct difficult. However, application of the current model can serve as a tool to understand the basic mechanical interactions in these complex systems.
机译:无融合脊柱侧弯生长杆系统对台式生物力学测试提出了许多挑战。进行这项研究是为了开发椎骨切除模型,该模型能够评估这些系统的剪切/矫正复位力,前/后负荷分配和长期疲劳特性。使用ASTM F1717和ISO 12189的某些部分来开发自定义动态结构。矫正/减少剪切力测试的结果表明,在疲劳测试完成时预期剪切/矫正力会降低。此外,在有限的静态压缩测试期间显示了双峰力-位移曲线,表明系统的前/后负荷共享功能。动态结构的疲劳测试表明,有可能发展出生长杆系统的疲劳曲线和耐力极限。此外,疲劳测试复制了常见的体内故障。脊柱侧弯治疗的复杂性使标准化结构的定义变得困难。但是,当前模型的应用可以用作了解这些复杂系统中基本机械相互作用的工具。

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