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猪模型中可生物降解与金属干涉螺钉及压配固定技术初始固定强度的比较。

Comparison of initial fixation strength between biodegradable and metallic interference screws and a press-fit fixation technique in a porcine model.

作者信息

Seil R, Rupp S, Krauss P W, Benz A, Kohn D M

机构信息

Department of Orthopaedic Surgery, University Hospital, Homburg/Saar, Germany.

出版信息

Am J Sports Med. 1998 Nov-Dec;26(6):815-9. doi: 10.1177/03635465980260061301.

Abstract

The objective of this study was to evaluate the initial fixation strength of a biodegradable interference screw compared with press-fit fixation and a titanium interference screw in anterior cruciate ligament reconstruction using a bone-patellar tendon-bone graft. Porcine lower limbs were used. The specimens underwent 500 loading cycles between 60 and 250 N. This corresponds to loads in the graft during aggressive rehabilitation. Thereafter, intact specimens were loaded to failure. Failure mode was defined by visual analysis. Under cyclic loads none of the interference screw fixations failed. In the press-fit group (angle between load axis and tunnel axis 80 degrees), five specimens failed. The mean maximal load to failure was 945 N (+/- 87) for the titanium screw, 797 N (+/- 60) for the biodegradable screw, and 708 N (+/- 211) for the five press-fit specimens that did not fail during cyclic loading. With respect to primary fixation strength, biodegradable screws are a reasonable alternative to titanium interference screws. The press-fit fixation did not provide a secure fixation in all cases. Five press-fit specimens failed under cyclic loads comparable with those seen under conditions of accelerated rehabilitation.

摘要

本研究的目的是在使用骨-髌腱-骨移植物进行前交叉韧带重建时,评估可生物降解挤压螺钉与压配固定及钛挤压螺钉相比的初始固定强度。使用猪的下肢。标本在60至250 N之间进行500次加载循环。这相当于在积极康复期间移植物中的负荷。此后,对完整的标本进行加载直至破坏。通过视觉分析确定破坏模式。在循环载荷下,没有一个挤压螺钉固定失败。在压配组(载荷轴与隧道轴之间的角度为80度)中,有5个标本失败。钛螺钉的平均最大破坏载荷为945 N(±87),可生物降解螺钉为797 N(±60),在循环加载期间未失败的5个压配标本为708 N(±211)。就初始固定强度而言,可生物降解螺钉是钛挤压螺钉的合理替代物。压配固定在所有情况下都不能提供可靠的固定。5个压配标本在与加速康复条件下相当的循环载荷下失败。

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