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Novel anterior cruciate ligament graft fixation device reduces slippage

机译:新型前交叉韧带移植物固定装置可减少打滑

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摘要

Clinically significant laxity occurs in 10%–30% of knees after anterior cruciate ligament reconstruction. Graft slippage and tension loss at the hamstring graft tibial fixation site during and after reconstruction surgery contribute to postoperative joint laxity and are detrimental to long-term knee stability and graft properties. Limiting graft slippage will reduce associated complications. We sought to compare the in vitro mechanical properties and in vivo joint stabilization, postoperative limb use, and graft incorporation of the novel GraftGrab™ (GG) device designed to reduce hamstring graft tibial fixation slippage with the commercially available bioabsorbable Bio-Post™ and spiked washer (BP). Mechanical testing was performed on canine tibia-hamstring graft constructs to quantify initial fixation properties. In vivo joint stabilization, postoperative limb use and graft incorporation of hamstring graft reconstructions were determined in a canine model. Outcomes included tibial translation and ground reaction forces preoperatively and 4 and 8 weeks postoperatively, three-dimensional graft and bone tunnel dimensions at the latter two time points, and graft-bone microstructure, as well as mechanical properties 8 weeks after implantation. Immediately after fixation, all grafts slipped from the BP constructs versus about 30% of GG constructs. In vivo limb use remained low, and tibial translation increased with time in the BP cohort. These results together confirm that initial graft slippage is lower with GG versus BP extracortical hamstring graft tibial fixation. In addition, postoperative recovery and joint stability are more consistent with the GG. This information supports the GG as an alternative to extracortical tibial hamstring graft fixation that has procedural advantages over current implants and reduces graft failure from slippage.
机译:在前交叉韧带重建后,有10%–30%的膝关节出现临床上明显的松弛。重建手术期间和之后,在ham绳肌腱胫骨固定部位的植骨滑移和张力损失会导致术后关节松弛,并且不利于长期的膝关节稳定性和移植物性能。限制移植物打滑将减少相关的并发症。我们试图比较新型的GraftGrab™(GG)装置的体外机械性能和体内关节稳定性,术后肢体使用情况以及移植物与市售可生物吸收的Bio-Post™和钉刺装置的结合,以减少腿筋移植物胫骨固定滑移洗衣机(BP)。对犬胫骨-ham绳肌移植结构进行了机械测试,以量化初始固定特性。在犬模型中确定体内关节稳定性,术后肢体使用和绳肌移植重建物的植体合并。结果包括:术前,术后4周和8周胫骨平移和地面反作用力,后两个时间点的三维移植物和骨隧道尺寸,移植物的骨微结构以及植入后8周的力学性能。固定后,所有移植物立即从BP结构中脱落,而GG结构中约30%脱落。在BP队列中,体内肢体使用率仍然较低,胫骨翻译随时间增加。这些结果共同证明,与BP皮质外绳肌胫骨胫骨固定术相比,GG的初始移植物滑移率更低。此外,术后恢复和关节稳定性与GG更一致。该信息支持GG替​​代皮质外胫骨绳肌腱移植物固定,与目前的植入物相比,该方法具有程序优势,并减少了因滑脱而导致的移植物失败。

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