Gupte Chinmay M, Bull Anthony M J, Thomas Rhidian D, Amis Andrew A
Department of Mechanical Engineering, Imperial College, London, England, UK.
J Bone Joint Surg Br. 2003 Jul;85(5):765-73.
We have tested the hypothesis that the meniscofemoral ligaments make a significant contribution to resisting anteroposterior and rotatory laxity of the posterior-cruciate-ligament-deficient knee. Eight cadaver human knees were tested for anteroposterior and rotatory laxity in a materials-testing machine. The posterior cruciate ligament (PCL) was then divided, followed by division of the meniscofemoral ligaments (MFLs). Laxity results were obtained for intact, PCL-deficient, and PCL-MFL-deficient knees. Division of the MFLs in the PCL-deficient knee increased posterior laxity between 15 degrees and 90 degrees of flexion. Force-displacement measurements showed that the MFLs contributed 28% to the total force resisting posterior drawer at 90 degrees of flexion in the intact knee, and 70.1% in the PCL-deficient knee. There was no effect on rotatory laxity. This is the first study which shows a function for the MFLs as secondary restraints to posterior tibial translation. The integrity of these structures should be assessed during both imaging and arthroscopic studies of PCL-injured knees since this may affect the diagnosis and management of such injuries.
半月板股骨韧带对抵抗后交叉韧带损伤膝关节的前后向及旋转松弛起重要作用。在材料试验机上对8具人类尸体膝关节进行前后向及旋转松弛测试。随后切断后交叉韧带(PCL),接着切断半月板股骨韧带(MFLs)。分别获得完整膝关节、PCL损伤膝关节和PCL-MFL损伤膝关节的松弛结果。在PCL损伤膝关节中切断MFLs会增加屈膝15度至90度之间的后向松弛。力-位移测量结果显示,在完整膝关节中,MFLs在屈膝90度时对抵抗后抽屉的总力贡献为28%,而在PCL损伤膝关节中为70.1%。对旋转松弛无影响。这是第一项表明MFLs作为胫骨后移次要限制因素功能的研究。在对PCL损伤膝关节进行影像学和关节镜检查时均应评估这些结构的完整性,因为这可能会影响此类损伤的诊断和处理。