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前交叉韧带重建自体移植物的初始生物力学特性

Initial biomechanical properties of anterior cruciate ligament reconstruction autografts.

作者信息

Stapleton T R, Curd D T, Baker C L

机构信息

Hughston Clinic, PC, Columbus, GA 31908-9517, USA.

出版信息

J South Orthop Assoc. 1999 Fall;8(3):173-80; discussion 180.

Abstract

To provide more information to consider when selecting a reconstruction technique, we did a side-by-side comparison of some of the initial biomechanical properties of currently accepted reconstruction methods. Our research hypotheses were that a quadrupled, woven semitendinosus and gracilis graft is as strong as any of the other commonly used graft materials and that quadrupling and weaving the hamstring graft may increase the stiffness of the overall construct Using lower extremity cadaveric specimens harvested from young donors, we fashioned seven each of seven types of graft: 9-mm, 10-mm, and 11-mm-wide patellar tendon graft (PTG); 10-mm-wide central quadriceps tendon graft; doubled semitendinosus graft; tripled semitendinosus graft; and quadrupled, woven semitendinosus and gracilis graft. Specimens were stripped of remaining soft tissue, and anterior cruciate ligament (ACL) constructs were created for biomechanical testing. The tibia was translated anteriorly on the femur, mimicking a pivot shift maneuver, andfailure strength, failure mechanism, and construct stiffness were recorded. No differences in mean strength were detected. The quadrupled, woven graft was significantly stiffer than the doubled semitendinosus graft and no less stiff than any of the PTG constructs. All grafts showed similar and adequate initial absolute strength to reconstruct the ACL. Quadrupling and weaving the semitendinosus and gracilis graft increases the stiffness of the reconstructed specimen to a level statistically similar to that of specimens reconstructed with a PTG.

摘要

为了在选择重建技术时提供更多信息以供参考,我们对当前公认的重建方法的一些初始生物力学特性进行了对比研究。我们的研究假设是,四倍编织的半腱肌和股薄肌移植物与其他常用移植物材料一样坚固,并且将绳肌移植物四倍编织可能会增加整体结构的刚度。我们使用从年轻供体获取的下肢尸体标本,制作了七种移植物,每种移植物各七个:9毫米、10毫米和11毫米宽的髌腱移植物(PTG);10毫米宽的股四头肌中央腱移植物;双股半腱肌移植物;三股半腱肌移植物;以及四倍编织的半腱肌和股薄肌移植物。去除标本上剩余的软组织,并构建前交叉韧带(ACL)结构用于生物力学测试。使胫骨在股骨上向前移位,模拟轴移动作,记录破坏强度、破坏机制和结构刚度。未检测到平均强度存在差异。四倍编织的移植物比双股半腱肌移植物明显更硬,且刚度不低于任何PTG结构。所有移植物在重建ACL方面均显示出相似且足够的初始绝对强度。将半腱肌和股薄肌移植物四倍编织可将重建标本的刚度提高到与用PTG重建的标本在统计学上相似的水平。

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