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使用全缝线可张紧无结技术固定腘绳肌近端肌腱

Fixation of the Proximal Hamstring Tendon Using an All-Suture Tensionable Knotless Technique.

作者信息

Carbone Andrew D, Saeed Sheema K, Perez-Padilla Paulo A, Domb Benjamin G

机构信息

American Hip Institute Research Foundation, Chicago, Illinois, U.S.A.

American Hip Institute, Chicago, Illinois, U.S.A.

出版信息

Arthrosc Tech. 2023 Jun 26;12(7):e1241-e1246. doi: 10.1016/j.eats.2023.03.016. eCollection 2023 Jul.

Abstract

Proximal hamstring injuries are a common sports and recreational injury among the active patient population. Surgical fixation of the tendons of the hamstring muscle complex, as opposed to conservative treatment alone, has shown improved patient outcomes, prompting the evolution of the suture anchors utilized in these repairs. Previous studies investigating the biomechanical properties of hamstring repair anchors have focused on double-row knotless techniques, in which the fixation of the overall construct relies on each individual anchor to maintain fixation. While these constructs have demonstrated biomechanical strength and clinical durability, each suture anchor represents a potential point of failure for the entire construct due to the crossed stitch anchor configuration. To address this limitation, recent tensionable knotless all-suture anchor designs have been implemented with success due to their smaller size and biomechanical strength. The aim of this technical note is, thus, to describe a technique for proximal hamstring repair using a tensionable knotless all-suture anchor construct that has 5 independent mattress sutures and, in doing so, employs the biomechanical strength of knotless fixation but eliminates the potential single point of failure seen with current knotless suture anchor designs.

摘要

腘绳肌近端损伤在活跃的患者群体中是一种常见的运动和娱乐损伤。与单纯保守治疗相比,腘绳肌复合体肌腱的手术固定已显示出更好的患者预后,这促使了这些修复中使用的缝合锚的发展。以往研究腘绳肌修复锚生物力学特性的重点是双排无结技术,在这种技术中,整个结构的固定依赖于每个单独的锚来维持固定。虽然这些结构已证明具有生物力学强度和临床耐久性,但由于交叉缝合锚的配置,每个缝合锚都代表整个结构潜在的失效点。为解决这一局限性,由于其尺寸较小和生物力学强度,最近可张紧的无结全缝合锚设计已成功应用。因此,本技术说明的目的是描述一种使用具有5根独立褥式缝线的可张紧无结全缝合锚结构进行腘绳肌近端修复的技术,这样做利用了无结固定的生物力学强度,但消除了当前无结缝合锚设计中可见的潜在单点失效问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c1c/10391563/0f69e835851f/gr1.jpg

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