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Physical characteristics of polyaxial-headed pedicle screws and biomechanical comparison of load with their failure.

机译:多轴带头椎弓根螺钉的物理特性以及负载与破坏的生物力学比较。

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摘要

STUDY DESIGN: Pedicle screw strength or load to failure was biomechanically evaluated, and the geometric characteristics of pedicle screw instrumentation systems were compared. OBJECTIVES: To compare the features of pedicle screw systems, and to demonstrate the failure point of the polyaxial pedicle screw head. SUMMARY OF BACKGROUND DATA: Many pedicle screw instrumentation systems are currently available to the spine surgeon. Each system has its unique characteristics. It is important for the surgeon to understand the differences in these pedicle screw systems. Pedicle screw load to failure has not been subjected to a comparison study. METHODS: The physical characteristics of each pedicle screw instrumentation system were determined. Features of rods, instruments, and pedicle screws were cataloged. Biomechanical testing of the pedicle screw construct was performed to determine the site and force of the load to failure. Nine pedicle screw systems were evaluated. Testing was performed with a pneumatic testing system under load control. Three polyaxial screws were used for each test at a load rate of 100 N/second. The load failure value was the force at which the pedicle screw or polyaxial head-screw interface initially deflected. RESULTS: Biomechanical testing demonstrated in all instances that the polyaxial head coupling to the screw was the first failure point. Although there have been subtle design differences in the instruments over time, the features of the pedicle screw instrument sets have become remarkably similar. CONCLUSIONS: Biomechanical pedicle screw load-to-failure data demonstrated that the polyaxial head coupling to the screw is the first to fail and may be a protective feature of the pedicle screw, preventing pedicle screw breakage. Knowing the physical characteristics of the available pedicle screw instrumentation systems may allow the choice of pedicle screw best suited for a given clinical situation.
机译:研究设计:对椎弓根螺钉强度或破坏载荷进行了生物力学评估,并比较了椎弓根螺钉器械系统的几何特征。目的:比较椎弓根螺钉系统的特点,并证明多轴椎弓根螺钉头的失效点。背景技术概述:脊柱外科医生目前可使用许多椎弓根螺钉器械系统。每个系统都有其独特的特性。对于外科医生来说,重要的是要了解这些椎弓根螺钉系统的差异。椎弓根螺钉失效载荷尚未进行比较研究。方法:确定每个椎弓根螺钉器械系统的物理特性。对杆,器械和椎弓根螺钉的功能进行了分类。进行椎弓根螺钉构造的生物力学测试,以确定载荷的部位和破坏力。评价了九个椎弓根螺钉系统。测试是在负载控制下使用气动测试系统进行的。每个测试使用三个多轴螺钉,负载率为100 N /秒。载荷失效值是椎弓根螺钉或多轴头螺钉界面最初偏转时的力。结果:在所有情况下的生物力学测试均表明,与螺钉连接的多轴头是第一个失效点。尽管随着时间的流逝,器械的设计存在细微的差异,但椎弓根螺钉器械组的功能却非常相似。结论:生物力学椎弓根螺钉的载荷失效数据表明,多轴头与螺钉的连接是第一个失效的,可能是椎弓根螺钉的保护性特征,可防止椎弓根螺钉断裂。知道可用的椎弓根螺钉器械系统的物理特性可以选择最适合给定临床情况的椎弓根螺钉。

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