双束前交叉韧带模拟与单束髌骨肌腱移植的概念。尸体可行性研究。

Matthias Jacobi, Robert A Magnussen, Vincent Villa, Guillaume Demey, Philippe Neyret
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引用次数: 5

摘要

背景:在进行ACL重建时,对恢复原生ACL的双束解剖有很大的兴趣。可能的技术包括使用两个具有独立通道的独立移植物和那些试图用单个移植物和较少通道模拟这种解剖结构的技术。许多后一种技术需要特定的仪器,并且在技术上具有挑战性。我们证明了原生ACL的双束解剖理论上可以通过单束重建来模仿。方法:采用骨-髌腱-骨(BTB)移植术对两具尸体膝关节进行单束前交叉韧带重建。两种移植物都被放置以模仿原生ACL足迹-一种使用矩形骨块和椭圆形隧道进行重建,另一种使用标准BTB移植物和圆形隧道进行重建。当膝关节在一定范围内移动时,对移植物行为进行定性评估。结果:如果骨块定位正确,前交叉韧带移植物能够在定性上模仿双膝天然前交叉韧带的行为。结论:单支BTB移植物重建ACL可以定性地模拟原生ACL的两束行为。确保这种行为的关键是注意到移植物在隧道中的适当方向。定量的生物力学研究是评估移植物取向对功能影响的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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The concept of double bundle ACL simulation with a single bundle patellar tendon graft. A cadaveric feasibility study.

Background: There is significant interest in the restoration of the double-bundle anatomy of the native ACL when performing ACL reconstruction. Possible techniques include those utilizing two separate grafts with independent tunnels and those that attempt to mimic this anatomy with a single graft and fewer tunnels. Many of the latter techniques require specific instrumentation and are technically challenging. We demonstrate that the double-bundle anatomy of the native ACL can theoretically be mimicked by a single-bundle reconstruction.

Methods: We performed single bundle ACL reconstruction with a bone-patellar tendon-bone (BTB) graft in two cadaveric knees. Both grafts were placed to mimic the native ACL footprints - one reconstruction was performed with rectangular bone blocks and oval tunnels and one was performed utilizing a standard BTB graft and round tunnels. Qualitative assessment of graft behavior was made as the knees were taken through a range of motion.

Results: The ACL graft was able to qualitatively mimic the behavior of the native ACL in both knees provided the bone blocks were correctly orientated.

Conclusions: ACL reconstruction with a single BTB graft can qualitatively mimic the behavior of the two bundles of the native ACL. The key to ensuring this behavior was noted to be appropriate orientation of the graft in the tunnels. Quantitative biomechanical investigations are necessary to evaluate the impact of graft orientation on function.

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