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The effects of rod contouring on spinal construct fatigue strength.

机译:杆轮廓对脊柱结构疲劳强度的影响。

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STUDY DESIGN: In vitro fatigue loading using a corpectomy model outfitted with posterior pedicle screw instrumentation. OBJECTIVE: The purpose of this study was to detect differences in fatigue resistance of titanium and stainless steel spinal constructs that use rods contoured using a French Bender, and to compare differences in fatigue resistance of contoured and straight titanium rods. SUMMARY OF BACKGROUND DATA: Instrumentation failure is generally thought to be caused by fatigue or cyclic loading. Intraoperative contouring of the posterior rods is almost always required to match the native kyphotic (thoracic) or lordotic (cervical or lumbar) spinal curvature. How bending these rods affects their overall fatigue resistance is not well described. In addition, changes in fatigue resistance may be a function of material type. METHODS: Spinal constructs were evaluated using the ASTM F1717-01 model. Two different titanium-based rods (Ti6AL4V and CpTi) and two different steel-based rods (Orthinox and 316L stainless steel) were evaluated in this study (n = 6 for each group). Rods were contoured at two points using a French Bender and were rigidly coupled to polyaxial pedicle screws within UHMWPE vertebral bodies. Constructs were cycled at a load ratio of 10 between a minimum and maximum loading regime of -250 N/-25 N and -700 N/-70 N at a frequency of 4 Hz. Estimated maximum nominal stresses at various points of interest in the spinal constructs were calculated using beam theory. Effects of the rod material, load, and stress on the number of cycles to failure were analyzed using Cox proportional hazards regression. RESULTS: All of the spinal constructs with contoured CpTi rods and contoured Ti6Al4V rods failed at one of the bends in the rods. Almost all of the spinal constructs with straight CpTi rods and straight Ti6Al4V rods failed where the blocker screw fastens the rod to the coupler of the polyaxial screw head. Contoured titanium constructs demonstrated significantly lower fatigue life than contoured 316L constructs. Contouring tended to lower the fatigue life of both the Ti6Al4V and CpTi constructs. CONCLUSION: Intraoperative rod contouring using a French Bender significantly reduces the fatigue life of titanium spinal constructs.
机译:研究设计:使用配备后椎弓根螺钉器械的全切除模型进行体外疲劳负荷。目的:本研究的目的是检测使用法国Bender仿形棒的钛和不锈钢脊柱结构的抗疲劳性差异,并比较仿形和直形钛棒的抗疲劳性差异。背景技术摘要:通常认为仪器故障是由疲劳或循环载荷引起的。几乎总是需要术后棒的术中轮廓匹配自然的后凸(胸椎)或脊柱后凸(颈椎或腰椎)脊柱弯曲。这些杆的弯曲如何影响其整体的抗疲劳性尚未很好地描述。另外,抗疲劳性的变化可以是材料类型的函数。方法:使用ASTM F1717-01模型评估脊髓结构。在这项研究中评估了两种不同的钛基棒(Ti6AL4V和CpTi)和两种不同的钢基棒(Orthinox和316L不锈钢)(每组n = 6)。使用French Bender在两点上勾勒出轮廓,然后将其刚性连接到UHMWPE椎体内的多轴椎弓根螺钉。将构建体以4 Hz的频率在-250 N / -25 N和-700 N / -70 N的最小和最大加载方式之间的10的加载比率下循环。使用梁理论计算在脊柱结构中各个感兴趣点的估计最大标称应力。使用Cox比例风险回归分析了杆材料,载荷和应力对失效循环次数的影响。结果:所有带有轮廓CpTi杆和轮廓Ti6Al4V杆的脊柱结构在杆中的一个弯曲处均失效。几乎所有带有笔直的CpTi棒和笔直的Ti6Al4V棒的脊柱构造都失败了,这是因为阻塞螺钉将棒紧固到多轴螺钉头的连接器上。轮廓钛结构的疲劳寿命显着低于轮廓316L结构。轮廓往往会降低Ti6Al4V和CpTi结构的疲劳寿命。结论:使用法国Bender进行的术中棒轮廓术显着降低了钛脊柱结构的疲劳寿命。

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