Abstract
Background: Recent anatomic investigations of the lateral structures of the knee have identified a new ligament, called the anterolateral ligament (ALL). To date, the anterolateral ligament has not been biomechanically tested to determine its function. Hypothesis: The ALL of the knee will resist internal rotation at high angles of flexion but will not resist anterior drawer forces. Study Design: Controlled laboratory study. Methods: Eleven cadaveric knees were subjected to 134 N of anterior drawer at flexion angles between 0° and 90° and separately to 5 N·m of internal rotation at the same flexion angles. The in situ forces of the ALL, anterior cruciate ligament (ACL), and lateral collateral ligament (LCL) were determined by the principle of superposition. Results: The contribution of the ALL during internal rotation increased significantly with increasing flexion, whereas that of the ACL decreased significantly. At knee flexion angles greater than 30°, the contribution of the ALL exceeded that of the ACL. During anterior drawer, the forces in the ALL were significantly less than the forces in the ACL at all flexion angles (P
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Parsons, E. M., Gee, A. O., Spiekerman, C., & Cavanagh, P. R. (2015). The biomechanical function of the anterolateral ligament of the knee. American Journal of Sports Medicine, 43(3), 669–674. https://doi.org/10.1177/0363546514562751
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