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经椎弓根脊柱内固定器械中的内力和力矩。椎弓根螺钉角度和横向固定的影响——4R-4杆联动概念。

Internal forces and moments in transpedicular spine instrumentation. The effect of pedicle screw angle and transfixation--the 4R-4bar linkage concept.

作者信息

Carson W L, Duffield R C, Arendt M, Ridgely B J, Gaines R W

机构信息

Mechanical and Aerospace Engineering Department, University of Missouri-Columbia.

出版信息

Spine (Phila Pa 1976). 1990 Sep;15(9):893-901. doi: 10.1097/00007632-199009000-00011.

Abstract

The three-dimensional components of force and moment within the plates and screws of a bilevel transpedicular spine implant construct subjected to different physiological loads were determined by experimental and finite element methods. The effect of pedicle screw angle and transfixation were studied. Untransfixed 0 degrees pedicle-to-pedicle (P-P) angle constructs with limited screw-bone torsional resistance are unstable 4R-4bar linkages. They will not resist lateral load or (when not in a rectangular position) axial load until the spinal column load shares. Untransfixed constructs with (0 degrees less than P-P angle less than 60 degrees) are structures. However, as P-P angle approaches 0 degrees, the structure becomes more flexible (unstable) and some internal force and moment components exponentially increase (starting at approximately a 30 degrees P-P angle). Transfixation eliminated the linkage instability and associated exponential increase in internal loads. These observations apply to all bilevel systems that allow no relative joint motion between pedicle screw and longitudinal member. If relative motion does exist, other types of linkage instability can occur.

摘要

通过实验和有限元方法确定了双节段经椎弓根脊柱植入物结构的钢板和螺钉在不同生理负荷下的三维力和力矩分量。研究了椎弓根螺钉角度和横固定的影响。未进行横固定且椎弓根与椎弓根(P-P)角度为0度、螺钉与骨的抗扭阻力有限的结构是不稳定的4R-4杆连杆机构。在脊柱负荷分担之前,它们无法抵抗侧向负荷或(当不在矩形位置时)轴向负荷。未进行横固定且(0度<P-P角度<60度)的结构是稳定的。然而,随着P-P角度接近0度,结构变得更加灵活(不稳定),一些内力和力矩分量呈指数增加(从大约30度的P-P角度开始)。横固定消除了连杆机构的不稳定性以及内部负荷的相关指数增加。这些观察结果适用于所有在椎弓根螺钉和纵向构件之间不允许相对关节运动的双节段系统。如果存在相对运动,则可能会出现其他类型的连杆机构不稳定性。

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