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Biomechanical Evaluation of an All-Inside Suture-Based Device for Repairing Longitudinal Meniscal Tears

机译:基于全缝线的修复纵向半月板眼泪的装置的生物力学评估

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Purpose: A device for all-inside suture-based meniscal repairs has been introduced (NovoStitch; Ceterix, Menlo Park, CA) that passes the suture vertically through the meniscus, thereby encircling the tear, and does not require an additional incision or extra-capsular anchors. Our aim was to compare this all-inside suture-based repair with an inside-out suture repair and an all-inside anchor-based repair (FasT-Fix 360 degrees; Smith & Nephew, Andover, MA). Methods: Longitudinal tears were created in 36 fresh-frozen porcine menisci. Repairs were performed using an all-inside suture-based meniscal repair device, an all-inside anchor-based repair, and an inside-out suture repair. They were tested with cyclic loading and load-to-failure testing. The displacement, response to cyclic loading (100, 300, and 500 cycles), and mode of failure were recorded. The stiffness of the constructs was calculated as well. Results: The all-inside suture-based repairs and the inside-out repairs showed significantly higher loads to failure than the all-inside anchor-based repairs. The stiffness values for the 3 repairs were not different. There were no differences in initial displacement. After 100, 300, and 500 cycles, the inside-out repair had higher gap formation (displacement) than the other 2 groups. Suture failure was the predominant mode of failure across all repair techniques. Conclusions: The all-inside suture-based repairs and inside-out repairs did not exhibit different load-to-failure values. In addition, the all-inside suture-based repairs and the all-inside anchor-based repairs did not exhibit different displacement values during cyclic loading.
机译:目的:已经引入了一种用于对所有缝线进行半月板修复的设备(NovoStitch; Ceterix,Menlo Park,CA),该设备可使缝线垂直穿过半月板,从而将泪液环绕,不需要额外的切口或额外的手术。荚膜锚。我们的目的是将这种由内而外的缝合线修复与由内而外的缝合线修复和基于全方位的锚定器修复(FasT-Fix 360度; Smith&Nephew,马萨诸塞州安多弗)进行比较。方法:在36只新鲜冷冻的猪半月板中产生纵向眼泪。使用基于全缝线的半月板修复设备,基于全锚钉的全修复和由内而外的缝线修复进行修复。他们通过循环加载和从加载失败测试进行了测试。记录位移,对循环载荷(100、300和500个循环)的响应以及失效模式。还计算出结构的刚度。结果:基于全缝线的缝合修复和由内而外的修复显示出比基于全锚钉的内部修复更高的破坏负荷。 3次修复的刚度值没有差异。初始位移没有差异。在100、300和500个循环之后,由内而外的修复比其他2组有更高的间隙形成(位移)。缝线失败是所有修复技术的主要失败方式。结论:基于缝合线的全内修复和由内而外的修复均未显示出不同的载荷-失效值。此外,在循环加载过程中,基于全缝线的修复和基于全锚定的修复没有显示出不同的位移值。

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