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Mechanical properties of suspensory fixation devices for anterior cruciate ligament reconstruction: Comparison of the fixed-length loop device versus the adjustable-length loop device

机译:用于前交叉韧带重建的悬吊固定装置的机械性能:定长环装置与可调长环装置的比较

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Background: No definite consensus has been reached regarding the optimal technique for graft fixation to the femur in an anterior cruciate ligament reconstruction. The purpose of this study was to evaluate the mechanical strength of two cortical suspension devices which were the TightRope (TR), a new adjustable-length loop device, and the EndoButton (EB), a well-established fixed-length loop device. Methods: The devices were tested under cyclic and pull-to-failure loading conditions in both an isolated device setup and a specimen setup using porcine femora and bovine flexor tendons. In particular, we examined the influence of tendon and device lengths, whereby the total length of the bone tunnel was fixed to 35. mm and an effective length of tendon in the bone tunnel was adjusted. Results: In the isolated device testing, the EB showed significantly higher ultimate tensile strength than the TR. The displacement after preloading for the EB was statistically lower than that for the TR, and retained a significant difference after the cyclic load. In contrast, specimen testing showed no statistical difference in the displacement among the EB group and TR groups. Conclusion: This study indicated that the EB provides greater mechanical strength than the TR. An important new finding was the measurement of initial displacement from the initiation of fixation until loading began using 50. N of tension. In isolated device testing, the TR induced significantly more displacement than the EB during preloading, which could reflect the TR loop's stretching capacity until a certain amount of tension is applied.
机译:背景:关于在前交叉韧带重建中将股骨固定在股骨上的最佳技术尚未达成明确共识。这项研究的目的是评估两个皮质悬挂装置的机械强度,这两个装置分别是新的可调长度环装置TightRope(TR)和成熟的固定长度环装置EndoButton(EB)。方法:使用猪股骨和牛屈肌腱,在隔离的设备设置和标本设置中,在循环和拉拔载荷条件下对设备进行了测试。特别是,我们检查了肌腱和器械长度的影响,从而将骨隧道的总长度固定为35. mm,并调整了骨隧道中的有效肌腱长度。结果:在隔离装置测试中,EB的极限拉伸强度明显高于TR。 EB的预紧位移在统计学上低于TR的位移,并且在循环载荷后仍保持显着差异。相反,标本测试显示EB组和TR组之间的位移无统计学差异。结论:这项研究表明,EB提供了比TR更高的机械强度。一个重要的新发现是使用50 N的张力测量从固定开始到加载开始的初始位移。在隔离的设备测试中,在预加载过程中,TR引起的位移要比EB大得多,这可能反映出TR环的拉伸能力,直到施加一定量的拉力为止。

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