Am J Vet Res. 2024 Jun 7;85(7). doi: 10.2460/ajvr.24.03.0071. Print 2024 Jul 1.
To assess the fatigue and load-to-failure mechanical characteristics of an intramedullary nail with a threaded interference design (TID) in comparison to a commercially available veterinary angle-stable nail with a Morse taper bolt design (I-Loc) of an equivalent size.
10 single interlocking screw/bolt constructs of TID and I-Loc implants were assembled using steel pipe segments and placed through 50,000 cycles of simulated, physiologic axial or torsional loading. Entry torque, postfatigue extraction torque, and 10th, 25,000th, and 50,000th cycle torsional toggle were assessed. Each construct was then loaded to failure in the same respective direction as fatigue testing. Four complete constructs of each design were then assessed using a synthetic bone analog with a 50-mm central defect via nondestructive torsional and axial loading followed by axial load to failure.
All constructs were angle stable at all time points and withstood fatigue loading. Median insertional torque, extraction torque-to-insertion torque ratio, and torsional yield load were 33%, 33%, and 72.5% lower, respectively, for the TID interlocking screws. No differences in torsional peak load, torsional stiffness, axial yield load, axial stiffness, or axial peak load were identified. No differences in complete construct angle stability, torsional stiffness, axial peak load, axial stiffness, or axial yield load were identified.
The TID had an inferior torsional yield load when compared to I-Loc implants but generated angle stability and sustained simulated physiologic fatigue loading. The TID may be a suitable mechanism for generating angle stability in interlocking nails.
评估具有螺纹干扰设计(TID)的髓内钉与具有等效尺寸的莫氏锥度螺栓设计(I-Loc)的市售兽医角稳定钉在疲劳和失效机械特性方面的差异。
使用钢管段组装了 10 个具有 TID 和 I-Loc 植入物的单锁定螺钉/螺栓结构,并进行了 50000 次模拟生理轴向或扭转加载循环。评估了初始扭矩、疲劳后拔出扭矩以及第 10、25000 和 50000 次循环扭转摆动。然后,以与疲劳测试相同的方向对每个结构进行加载直至失效。随后,使用具有 50mm 中心缺陷的合成骨模拟物对每个设计的四个完整结构进行非破坏性扭转和轴向加载,然后进行轴向加载直至失效。
所有结构在所有时间点均保持角稳定并能承受疲劳加载。TID 锁定螺钉的插入扭矩中位数、拔出扭矩与插入扭矩比以及扭转屈服载荷分别降低了 33%、33%和 72.5%。扭转峰值载荷、扭转刚度、轴向屈服载荷、轴向刚度或轴向峰值载荷没有差异。完整结构的角稳定性、扭转刚度、轴向峰值载荷、轴向刚度或轴向屈服载荷没有差异。
与 I-Loc 植入物相比,TID 的扭转屈服载荷较低,但具有角稳定性并能承受模拟生理疲劳加载。TID 可能是产生锁定钉角稳定性的合适机制。