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交叉韧带中力的直接体外测量。第一部分:完整膝关节多平面负荷的影响。

Direct in vitro measurement of forces in the cruciate ligaments. Part I: The effect of multiplane loading in the intact knee.

作者信息

Wascher D C, Markolf K L, Shapiro M S, Finerman G A

机构信息

Department of Orthopaedic Surgery, University of California, Los Angeles 90024-1795.

出版信息

J Bone Joint Surg Am. 1993 Mar;75(3):377-86. doi: 10.2106/00004623-199303000-00009.

Abstract

Specially designed load-transducers that measured the resultant forces exerted by the posterior and anterior cruciate ligaments on their respective femoral and tibial insertions were applied to eighteen fresh-frozen cadaveric knees for a series of controlled loading experiments. The mean force in the posterior cruciate ligament at 5 degrees of forced hyperextension of the knee was 23 per cent of the mean force in the anterior cruciate ligament. When the knee was hyperflexed by application of 10.0 newton-meters of bending moment to the tibia, the mean force in the posterior cruciate ligament was 55 per cent of that in the anterior cruciate ligament. Quadriceps tendon pull increased the force in the posterior cruciate ligament in twelve of the fourteen specimens to which it had been applied, at 80 and 90 degrees of flexion only. The force generated in the posterior cruciate ligament by applied internal tibial torque was greatest when the knee was in 90 degrees of flexion; the force in the anterior cruciate ligament was greatest when the knee was fully extended. External tibial torque generated force in the posterior cruciate ligament in only eight specimens, and only at 80 and 90 degrees of flexion. The levels of force that were generated in the posterior cruciate ligament by applied varus and valgus bending moment were greatest at 90 degrees of flexion of the knee; the levels of force in the anterior cruciate ligament were greatest with the knee in full extension. With the knee flexed 90 degrees and the tibia in neutral rotation, fifty newtons of applied posterior tibial force increased the mean force in the posterior cruciate ligament by 58.4 newtons; at full extension, no increase in the force in the ligament was recorded, indicating that tensed capsular structures were absorbing the applied load. When the tibia was internally or externally rotated by applied tibial torque, the increases in the force in the ligament from applied posterior tibial force were sharply diminished.

摘要

专门设计的载荷传感器被应用于18个新鲜冷冻的尸体膝关节,用于一系列控制加载实验,这些传感器用于测量后交叉韧带和前交叉韧带在其各自的股骨和胫骨附着点上施加的合力。膝关节在被动过度伸展5度时,后交叉韧带的平均力为前交叉韧带平均力的23%。当通过对胫骨施加10.0牛顿·米的弯矩使膝关节过度屈曲时,后交叉韧带的平均力为前交叉韧带平均力的55%。股四头肌拉力仅在80度和90度屈曲时,使应用该拉力的14个标本中的12个后交叉韧带的力增加。当膝关节处于90度屈曲时,施加的胫骨内扭矩在后交叉韧带中产生的力最大;当膝关节完全伸展时,前交叉韧带中的力最大。仅在80度和90度屈曲时,外部胫骨扭矩仅在8个标本的后交叉韧带中产生力。在膝关节90度屈曲时,施加的内翻和外翻弯矩在后交叉韧带中产生的力水平最大;在膝关节完全伸展时,前交叉韧带中的力水平最大。膝关节屈曲90度且胫骨处于中立旋转时,施加50牛顿的胫骨后向力使后交叉韧带的平均力增加58.4牛顿;在完全伸展时,未记录到韧带力的增加,表明紧张的关节囊结构正在吸收施加的负荷。当通过施加胫骨扭矩使胫骨内旋或外旋时,施加的胫骨后向力导致的韧带力增加急剧减少。

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