Evaluation of a simulated pivot shift test: a biomechanical study.

Lars Engebretsen, Coen A Wijdicks, Colin J Anderson, Benjamin Westerhaus, Robert F LaPrade
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引用次数: 61

Abstract

Purpose: Double-bundle anterior cruciate reconstructions have led to an increased interest in quantifying anterolateral rotatory stability. The application of combined internal rotation and valgus torques to the knee can more nearly recreate the anterolateral subluxation that occurs in the pivot shift test in vitro compared to coupled internal rotation torque and anterior tibial loads.

Methods: Twelve non-paired cadaveric knees were biomechanically tested with the ACL intact and sectioned. For each test state, six-degree-of-freedom positional data were collected for two simulated pivot shift loads consisting of a 5-Nm internal rotation torque coupled with either a 10-Nm valgus torque or an 88 N anterior tibial load at 0°, 20°, 30°, 60°, and 90° of knee flexion.

Results: The coupled internal rotation and valgus torques produced a significant increase in anterolateral subluxation between the ACL intact and sectioned states at all tested angles except 90º (5.9 ± 0.4 mm at 0°, 4.3 ± 0.6 mm at 20°, 3.5 ± 0.6 mm at 30°, 2.1 ± 0.6 mm at 60°). The coupled internal rotation and an anterior tibial load produced significant increases between the ACL intact and sectioned states at all tested angles except 30º (5.4 ± 0.5 mm at 0°, 3.7 ± 0.5 mm at 20°, 2.1 ± 0.8 mm at 60°, 1.4 ± 0.3 mm at 90°).

Conclusions: We found that the coupled internal rotation and valgus torques best recreated the anterolateral subluxation that occurs in the pivot shift in vitro. This study describes an anterolateral subluxation test for ACL integrity in the laboratory setting.

模拟枢轴移位试验的评价:生物力学研究。
目的:双束前交叉重建导致量化前外侧旋转稳定性的兴趣增加。与联合内旋扭矩和胫骨前负荷相比,联合内旋扭矩和外翻扭矩在体外枢轴移位试验中可以更接近地重现前外侧半脱位。方法:对12个非配对的尸体膝关节进行生物力学测试,前交叉韧带完整并切片。在每个测试状态下,收集了两种模拟支点移位载荷的六自由度位置数据,该载荷包括5 nm的内旋扭矩,外加10 nm的外翻扭矩或88 N的胫骨前负荷,分别为0°、20°、30°、60°和90°膝关节屈曲。结果:在除90º外的所有测试角度(0°时5.9±0.4 mm, 20°时4.3±0.6 mm, 30°时3.5±0.6 mm, 60°时2.1±0.6 mm),内旋和外翻扭矩的耦合导致前外侧半脱位显著增加。在除30º外的所有测试角度(0°时5.4±0.5 mm, 20°时3.7±0.5 mm, 60°时2.1±0.8 mm, 90°时1.4±0.3 mm),内旋和胫骨前负荷的耦合使ACL完整状态和剖面状态显著增加。结论:我们发现,内旋和外翻扭矩的耦合可以最好地重建体外枢轴移位时发生的前外侧半脱位。本研究描述了在实验室环境下前外侧半脱位测试ACL完整性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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