Kim Kyungsoo, Park Won Man, Kim Yoon Hyuk, Lee SuKyoung
Proc Inst Mech Eng H. 2010;224(3):477-85. doi: 10.1243/09544119JEIM611.
Breakage of screws has been one of the most common complications in spinal fixation systems. However, no studies have examined the breakage risk of pedicle screw fixation systems that use flexible rods, even though flexible rods are currently being used for dynamic stabilization. In this study, the risk of breakage of screws for the rods with various flexibilities in pedicle screw fixation systems is investigated by calculating the von Mises stress as a breakage risk factor using finite element analysis. Three-dimensional finite element models of the lumbar spine with posterior one-level spinal fixations at L4-L5 using four types of rod (a straight rod, a 4 mm spring rod, a 3 mm spring rod, and a 2 mm spring rod) were developed. The von Mises stresses in both the pedicle screws and the rods were analysed under flexion, extension, lateral bending, and torsion moments of 10 Nm with a follower load of 400 N. The maximum von Mises stress, which was concentrated on the neck region of the pedicle screw, decreased as the flexibility of the rod increased. However, the ratio of the maximum stress in the rod to the yield stress increased substantially when a highly flexible rod was used. Thus, the level of rod flexibility should be considered carefully when using flexible rods for dynamic stabilization because the intersegmental motion facilitated by the flexible rod results in rod breakage.
螺钉断裂一直是脊柱内固定系统中最常见的并发症之一。然而,尽管目前柔性棒材被用于动态稳定,但尚无研究探讨使用柔性棒材的椎弓根螺钉固定系统的断裂风险。在本研究中,通过使用有限元分析计算作为断裂风险因素的冯·米塞斯应力,研究了椎弓根螺钉固定系统中不同柔性棒材的螺钉断裂风险。建立了使用四种类型棒材(直棒、4mm弹簧棒、3mm弹簧棒和2mm弹簧棒)在L4-L5进行后路单节段脊柱固定的腰椎三维有限元模型。在10 Nm的屈曲、伸展、侧弯和扭转力矩以及400 N的跟随载荷下,分析椎弓根螺钉和棒材中的冯·米塞斯应力。集中在椎弓根螺钉颈部区域的最大冯·米塞斯应力随着棒材柔性的增加而降低。然而,当使用高柔性棒材时,棒材中的最大应力与屈服应力之比大幅增加。因此,在使用柔性棒材进行动态稳定时,应仔细考虑棒材的柔性水平,因为柔性棒材促进的节段间运动会导致棒材断裂。