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Improvement of primary stability in ACL reconstruction by mesh augmentation of an established method of free tendon graft fixation. A biomechanical study on a porcine model

机译:通过网格增强游离肌腱移植物固定的既定方法来改善ACL重建的主要稳定性。猪模型的生物力学研究

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Purpose: The aim of the present study was to compare primary stability in ACL reconstruction and ultimate load to failure of a mesh augmented hamstring tendon graft fixed with two cross pins to established hamstrings and bone-patellar-tendon-bone (BTB) graft fixation methods. Methods: Forty fresh porcine femora were divided into four groups: (A): BTB graft fixed with two RigidFix? pins, (B): hamstring tendon graft fixed with a Milagro? interference screw, (C): hamstring tendon graft fixed with two RigidFix? pins, and (D): hamstring tendon graft augmented with Ultrapro? mesh fixed with two RigidFix? pins. Each graft underwent cyclic loading in tension and load to failure. Elastic and plastic displacements were measured by 3-dimensional digital image correlation. Groups were compared by one-way ANOVA and Tukey-Kramer post-hoc tests. Results: After 1000. cycles, the mean plastic displacement was lowest in the BTB graft (p. <. 0.001). Plastic displacement was significantly lower in the mesh augmented group compared to the plain hamstring graft and the Milagro screw group (p. <. 0.05). Load to failure was highest in the mesh-augmented group; significant to the hamstring tendon (p. = 0.023). Conclusion: Although the BTB-graft represented the most stable construct against plastic displacement in our study, mesh augmentation of free tendon grafts significantly increased primary stability and reduced plastic displacement of femoral cross pin fixation. This new augmentation device may better protect the hamstrings graft from secondary elongation during postoperative rehabilitation. Clinical relevance: Mesh augmentation seems to be an effective technique to stabilise free hamstring tendon autografts during postoperative rehabilitation with significant reduction of graft slippage. ? 2012 Elsevier B.V.
机译:目的:本研究的目的是比较用两个交叉销固定的网状增强绳肌腱移植物与已建立的绳肌和bone骨-腱-骨(BTB)移植物固定方法在ACL重建中的主要稳定性和最终载荷与失败的比较。 。方法:将四十只新鲜的猪股骨分为四组:(A):BTB移植物固定有两个RigidFix?针脚(B):用Milagro固定的绳肌腱移植物?干涉螺钉,(C):用两个RigidFix固定绳肌腱移植物?针和(D):用Ultrapro增强Ultra绳肌腱移植物?网格固定两个RigidFix?针脚。每个移植物承受周期性的拉伸应力和破坏力。弹性和塑性位移通过3维数字图像相关性进行测量。通过单向方差分析和Tukey-Kramer事后检验对各组进行比较。结果:经过1000个循环后,BTB移植物中的平均塑性位移最低(p。<。0.001)。与普通绳肌移植物和Milagro螺钉组相比,网状增强组的塑性位移明显更低(p。<。0.05)。网格增强组的破坏载荷最高。对腿筋腱有显着影响(p = 0.023)。结论:尽管在我们的研究中,BTB移植物是抵抗塑性移位的最稳定结构,但游离肌腱移植物的网状增大显着增加了股骨交叉销固定的基本稳定性并减少了塑性移位。这种新的增强装置可以在术后康复期间更好地保护protect绳肌移植物免受继发性伸长的影响。临床意义:网格扩大似乎是在术后康复过程中稳定游离绳肌腱自体移植的有效技术,可显着减少移植物滑脱。 ? 2012年Elsevier B.V.

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