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使用游离肌腱移植技术重建后外侧角的新方法。

Novel approach for reconstruction of the posterolateral corner using a free tendon graft technique.

作者信息

Bicos James, Arciero Robert A

机构信息

Department of Orthopaedic Surgery, University of Connecticut Health Center, 10 Talcott Notch Road, Suite 100, Farmington, CT 06034-4037, USA.

出版信息

Sports Med Arthrosc Rev. 2006 Mar;14(1):28-36. doi: 10.1097/00132585-200603000-00006.

Abstract

Injuries to the lateral collateral ligament (LCL) and posterolateral corner of the knee, particularly when combined with anterior cruciate or posterior cruciate ligament injuries, can result in profound symptomatic knee instability. Although many surgical improvements have been made in the reconstruction of anterior and posterior cruciate ligament injuries, reconstruction of the posterolateral corner has had less predictable results, with residual pathologic laxity especially in the chronic situation. This has stimulated many surgeons to recommend acute repair of posterolateral knee injuries. This article will briefly review the relevant surgical anatomy, present a summary of current reconstructive techniques for the posterolateral corner, and describe our preferred method for anatomic reconstruction of the posterolateral corner for chronic instability of the knee by recreating the LCL and popliteofibular ligament using either autogenous or allograft soft tissue and an interference screw technique. We do not use a transtibial tunnel but re-orientate the transfibular tunnel and utilize 2 femoral tunnels an the attempt to recreate the LCL and popliteus tendon. In a small clinical series, this has proven to restore varus rotation and external rotation patholaxities with a high degree of predictability.

摘要

膝关节外侧副韧带(LCL)及后外侧角损伤,尤其是合并前交叉韧带或后交叉韧带损伤时,可导致明显的膝关节症状性不稳定。尽管在前交叉韧带和后交叉韧带损伤的重建方面已经取得了许多手术改进,但后外侧角的重建效果仍不太可预测,尤其是在慢性情况下会残留病理性松弛。这促使许多外科医生建议对膝关节后外侧损伤进行急性修复。本文将简要回顾相关的手术解剖结构,总结当前后外侧角的重建技术,并描述我们通过使用自体或同种异体软组织及干涉螺钉技术重建LCL和腘腓韧带,对膝关节慢性不稳定进行后外侧角解剖重建的首选方法。我们不使用经胫骨隧道,而是重新定位经腓骨隧道,并利用两个股骨隧道来重建LCL和腘肌腱。在一个小型临床系列中,这已被证明能高度可预测地恢复内翻旋转和外旋松弛。

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