The significant effect of the medial hamstrings on dynamic knee stability.

Aneet S Toor, Orr Limpisvasti, Hansel E Ihn, Michelle H McGarry, Michael Banffy, Thay Q Lee
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引用次数: 21

Abstract

Purpose: While hamstring autograft is a popular option for the general population, BTB autograft is still significantly more popular among professional athletes due to concerns of altering knee kinematics with hamstring harvest. This study seeks to quantify the contribution of the medial hamstrings to knee stability.

Methods: Valgus knee laxity, anterior tibial translation, and rotational motion were measured in eight fresh-frozen cadaveric knees after forces were applied on the tibia in each plane (coronal, sagittal, and axial). Four muscle loading conditions were tested: (1) physiologic fully loaded pes anserinus, (2) semitendinosus only loaded, (3) gracilis only loaded, and (4) unloaded pes anserinus. The protocol was then repeated with the ACL transected.

Results: In the ACL intact knee, the neutral position of the tibia with an unloaded pes anserinus was significantly more externally rotated (p < 0.01) and anteriorly translated (p < 0.05) at all knee flexion angles than a tibia with a physiologic loaded pes anserinus. Applying an external rotation torque significantly increased external rotation for the fully unloaded (p < 0.001), gracilis only loaded (p < 0.001), and semitendinosus only loaded (p < 0.01) conditions at all flexion angles. Applying a valgus torque resulted in a significant increase in laxity for the fully unloaded condition only at 30° of flexion (p < 0.05). Applying an anterior tibial force resulted in significant increase in anterior translation for the fully unloaded condition at all flexion angles (p < 0.01), and for the gracilis only loaded condition in 30° and 60° of flexion (p < 0.05). Similar results were seen in the ACL deficient model.

Conclusion: The medial hamstrings are involved in rotational, translational, and varus/valgus control of the knee. Applying anterior, external rotation, and valgus forces on the hamstring deficient knee significantly increases motion in those planes. Harvesting the gracilis and semitendinosus tendons alters native knee kinematics and stability. This is clinically relevant and should be a consideration when choosing graft source for ACL reconstruction, especially in the elite athlete population.

内侧腘绳肌对动态膝关节稳定性的显著影响。
目的:虽然腘绳肌腱自体移植物是普通人群的一种流行选择,但由于担心腘绳肌腱切除会改变膝关节的运动学,BTB自体移植物在专业运动员中仍然更受欢迎。本研究旨在量化内侧腘绳肌对膝关节稳定性的贡献。方法:在胫骨各平面(冠状面、矢状面和轴向面)施加力后,测量8例新鲜冷冻尸体膝关节外翻、胫骨前移位和旋转运动。测试了四种肌肉负荷情况:(1)生理性完全负荷的鹅足,(2)仅负荷的半腱肌,(3)仅负荷的股薄肌,(4)无负荷的鹅足。该协议然后重复与ACL横断。结果:在前交叉韧带完整的膝关节中,卸下鹅足的胫骨中立位置明显更向外旋转(p结论:内侧腘绳肌参与膝关节的旋转、平移和内翻/外翻控制。在腿筋缺乏的膝关节上施加前旋、外旋和外翻力可显著增加这些平面的运动。收获股薄肌和半腱肌肌腱改变了膝关节的运动学和稳定性。这与临床相关,在选择ACL重建的移植物来源时应予以考虑,特别是在优秀运动员人群中。
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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