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Novel flat and wide meniscal repair material improves the ultimate load of knot breakage in a porcine trans-capsular meniscal repair model

机译:新颖的平坦和宽半月板修复材料改善了猪反囊囊型半月板修复模型中的结断裂的最终载荷

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摘要

Abstract Background In the meniscal repair procedures, a high ultimate load capacity and low cyclic creep at the repair site are favorable and lead to good biological incorporation of the tear site after surgery. Previous biomechanical tensile tests of the meniscal sutures have identified the suture knot as the weakest point. We hypothesized that the strength of a suture knot depends on the suture shape, and therefore, we compared three differently shaped suture materials composed of the same material and quantity per length. The purpose of this study was to determine whether a novel flat and wide repair material (FWRM), which consists of braided multi-threads that are cross-sectionally flat and wide, improves the ultimate load of knot breakage in a biomechanical experiment using a porcine trans-capsular meniscal repair model. Methods Eighteen fresh-frozen porcine knees (n = 6 in each group) were used. A longitudinal tear in the middle segment of the medial meniscus was created and repaired with a trans-capsular inside-out method using the following suture materials: No. 2–0 braided polyester conventional suture, hollow suture, and FWRM. After the separation of the inner segment of the meniscus with leaving, the suture stability of the repaired menisci was biomechanically analyzed with a video camera system for widening after a cyclic load between 5 and 20 N was applied 300 times. Ultimate failure load and stiffness at 5 mm/ min were also analyzed. Results We found no significant difference in suture widening after cyclic load tests [conventional suture, mean 0.51 mm (S.D. 0.39 mm); hollow suture, mean 0.23 mm (S.D. 0.11 mm); and FWRM, mean 0.54 mm (S.D. 0.08 mm)]. The failure mode in all specimens was knot breakage. Compared with those of the other groups, the ultimate failure load of FWRM was statistically significantly higher in the load-to-failure tests (conventional suture, mean 58.8 N [S.D. 8.25 N]; hollow suture, mean 79.4 N [S.D. 10.2 N]; and FWRM, mean 97.4 N [S.D. 3.65 N]; p < 0.05). Conclusion FWRM improves the ultimate load of knot breakage without altering stability. This material may contribute to safe and stable meniscus repair.
机译:抽象背景在半月板修复程序中,修复站点的高终极负荷能力和低循环蠕变是有利的,并导致手术后撕裂部位的良好生物学融合。以前的半月板缝合线的生物力学拉伸试验已经将缝合线结作为最弱点。我们假设缝合线结的强度取决于缝合线形状,因此,我们将三种不同形状的缝合材料与每长度相同的材料和数量组成的三种不同形状的缝合材料。本研究的目的是确定一种新颖的平坦和宽修复材料(FWRM),它由横截面平坦和宽的编织多线组成,从而改善了使用猪的生物力学实验中的结断裂的最终载荷跨透镜半月板修复模型。方法使用18种新鲜冷冻猪膝盖(每组中的N = 6)。使用以下缝合材料的反囊内输出方法产生并修复了内侧半月板的中间段中的纵向撕裂:No.2-0编织聚酯常规缝合线,空心缝合和FWRM。在用外部分离弯月面的内部区段之后,通过用于在应用300次之间的循环负载之后,使用摄像机系统进行了用于加宽的摄像机系统进行了生物力学分析的缝合线稳定性。还分析了最终的故障负载和刚度5毫米/分钟。结果我们发现循环载荷试验后缝合线的显着差异[常规缝合线,平均值0.51mm(S.D.0.39 mm);空心缝合,平均值0.23mm(S.D. 0.11mm);和FWRM,平均值0.54 mm(0.08 mm)]。所有标本中的故障模式都是结破裂。与其他组的载荷试验中FWRM的最终失效负载(常规缝合线,平均58.8 n];中空缝合线,平均值,平均缝合,平均缝合,平均缝合,平均缝合,平均缝合,平均值,平均值。 ;和FWRM,平均值97.4 n [SD 3.65 n]; P <0.05)。结论FWRM改善了结断裂的最终载荷而不改变稳定性。这种材料可能有助于安全稳定的弯月面修复。

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