Singerman R, Berilla J, Archdeacon M, Peyser A
Department of Orthopaedics, Case Western Reserve University, Cleveland, OH 44106, USA.
J Biomech Eng. 1999 Apr;121(2):234-42. doi: 10.1115/1.2835109.
Three orthogonal components of the tibiofemoral and patellofemoral forces were measured simultaneously for knees with intact cruciate ligaments (nine knees), following anterior cruciate ligament resection (six knees), and subsequent posterior cruciate ligament resection (six knees). The knees were loaded using an experimental protocol that modeled static double-leg squat. The mean compressive tibial force increased with flexion angle. The mean anteroposterior tibial shear force acted posteriorly on the tibia below 50 deg flexion and anteriorly above 55 deg. Mediolateral shear forces were low compared to the other force components and tended to be directed medially on both the patella and tibia. The mean value of the ratio of the resultant tibial force divided by the quadriceps force decreased with increasing flexion angle and was between 0.6 and 0.7 above 70 deg flexion. The mean value of the ratio of the resultant tibiofemoral contact force divided by the resultant patellofemoral contact force decreased with increasing flexion and was between 0.8 and 1.0 above 55 deg flexion. Cruciate ligament resection resulted in no significant changes in the patellar contact forces. Following resection of the anterior cruciate ligament, the tibial anteroposterior shear force was directed anteriorly over all flexion angles tested. Subsequent resection of the posterior cruciate ligament resulted in an approximately 10 percent increase in the quadriceps tendon and tibial compressive force.
对完整交叉韧带的膝关节(9个膝关节)、前交叉韧带切除术后(6个膝关节)以及随后后交叉韧带切除术后(6个膝关节),同时测量胫股和髌股力的三个正交分量。使用模拟静态双腿深蹲的实验方案对膝关节施加负荷。平均胫骨压缩力随屈曲角度增加。平均胫前后剪切力在屈曲50度以下时作用于胫骨后方,在55度以上时作用于胫骨前方。与其他力分量相比,内外侧剪切力较低,并且在髌骨和胫骨上都倾向于向内。胫骨合力与股四头肌力量之比的平均值随屈曲角度增加而降低,在屈曲70度以上时在0.6至0.7之间。胫股接触合力与髌股接触合力之比的平均值随屈曲增加而降低,在屈曲55度以上时在0.8至1.0之间。交叉韧带切除对髌股接触力无显著影响。在前交叉韧带切除后,在所有测试的屈曲角度下,胫前后剪切力都向前。随后后交叉韧带切除导致股四头肌腱和胫骨压缩力增加约10%。