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膝关节内侧副韧带愈合。在兔身上研究内侧副韧带和前交叉韧带联合损伤。

Medial collateral knee ligament healing. Combined medial collateral and anterior cruciate ligament injuries studied in rabbits.

作者信息

Woo S L, Niyibizi C, Matyas J, Kavalkovich K, Weaver-Green C, Fox R J

机构信息

Department of Orthopaedic Surgery, University of Pittsburgh, PA 15213, USA.

出版信息

Acta Orthop Scand. 1997 Apr;68(2):142-8. doi: 10.3109/17453679709003997.

Abstract

We examined the histological appearance and biochemical properties of the healing medial collateral ligament (MCL) of a rabbit knee after combined MCL and anterior cruciate ligament (ACL) injury treated with ACL reconstruction and with or without MCL repair. By so doing, we hoped to understand better our previous bomechanical observations (Ohno et al. 1995) and possibly learn where to focus future investigation into improving the quality of the healing MCL. Ligaments were examined at 6 and 12 weeks of healing. We found healing of all ligaments with hypercellularity and fibroblast elongation along the axis of loading, as expected. Unexpected, however, was the finding of multiple osteophytes in both the repaired and nonrepaired specimens at the medial borders of the joint and at the MCL insertions. These were felt to affect possibly the biomechanics of the MCL by causing stress risers at the point where they undermine the ligament. Biochemically, we demonstrated a correlation between collagen content and hydroxypyridinium crosslinks and modulus of elasticity. While this implies that the modulus is dependent on collagen content and hydroxypyridinium crosslink density, modulus is also probably dependent on other factors such as collagen organization, type and internal structure. Overall, the detailed characterization and correlation between the histological, biochemical, and biomechanical properties of the healing MCL in the severe knee injury model provide insight into the functional behavior of the healing MCL.

摘要

我们研究了兔膝关节内侧副韧带(MCL)和前交叉韧带(ACL)联合损伤后,在进行ACL重建且有或没有MCL修复的情况下,愈合的MCL的组织学外观和生化特性。通过这样做,我们希望能更好地理解我们之前的生物力学观察结果(Ohno等人,1995年),并可能了解未来在提高愈合MCL质量方面的研究重点。在愈合的第6周和第12周对韧带进行检查。正如预期的那样,我们发现所有韧带均愈合,伴有细胞增多和成纤维细胞沿负荷轴伸长。然而,出乎意料的是,在修复和未修复的标本中,在关节内侧边缘和MCL附着处均发现了多个骨赘。这些骨赘被认为可能通过在其破坏韧带的部位引起应力集中而影响MCL的生物力学。在生化方面,我们证明了胶原蛋白含量与羟基吡啶交联物和弹性模量之间存在相关性。虽然这意味着弹性模量取决于胶原蛋白含量和羟基吡啶交联密度,但弹性模量可能还取决于其他因素,如胶原蛋白的组织、类型和内部结构。总体而言,在严重膝关节损伤模型中,对愈合MCL的组织学、生化和生物力学特性之间的详细表征及相关性的研究,为了解愈合MCL的功能行为提供了线索。

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