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首页> 外文期刊>The Journal of Bone and Joint Surgery. American Volume >Effect of ACL transection on internal tibial rotation in an in vitro simulated pivot landing.
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Effect of ACL transection on internal tibial rotation in an in vitro simulated pivot landing.

机译:在体外模拟枢轴着陆中,ACL横断对胫骨内部旋转的影响。

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摘要

BACKGROUND: The amount of resistance provided by the ACL (anterior cruciate ligament) to axial tibial rotation remains controversial. The goal of this study was to test the primary hypotheses that ACL transection would not significantly affect tibial rotation under the large impulsive loads associated with a simulated pivot landing but would increase anterior tibial translation. METHODS: Twelve cadaveric knees (mean age of donors [and standard deviation] at the time of death, 65.0 +/- 10.5 years) were mounted in a custom testing apparatus to simulate a single-leg pivot landing. A compound impulsive load was applied to the distal part of the tibia with compression ( approximately 800 N), flexion moment ( approximately 40 N-m), and axial tibial torque ( approximately 17 N-m) in the presence of five trans-knee muscle forces. A differential variable reluctance transducer mounted on the anteromedial aspect of the ACL measured relative strain. With the knee initially in 15 degrees of flexion, and after five combined compression and flexion moment (baseline) loading trials, six trials were conducted with the addition of either internal or external tibial torque (internal or external loading), and then six baseline trials were performed. The ACL was then sectioned, six baseline trials were repeated, and then six trials of either the internal or the external loading condition, whichever had initially resulted in the larger relative ACL strain, were carried out. Tibiofemoral kinematics were measured optoelectronically. The results were analyzed with a nonparametric Wilcoxon signed-rank test. RESULTS: Following ACL transection, the increase in the normalized internal tibial rotation was significant but small (0.7 degrees /N-m +/- 0.3 degrees /N-m to 0.8 degrees /N-m +/- 0.3 degrees /N-m, p = 0.012), while anterior tibial translation increased significantly (3.8 +/- 2.9 to 7.0 +/- 2.9 mm, p = 0.017). CONCLUSIONS: ACL transection leads to a small increase in internal tibial rotation, equivalent to a 13% decrease in the dynamic rotational resistance, under the large forces associated with a simulated pivot landing, but it leads to a significant increase in anterior tibial translation.
机译:背景:ACL(前交叉韧带)对胫骨轴向旋转的抵抗力仍然存在争议。这项研究的目的是检验主要的假设,即在与模拟枢轴着陆相关的大冲击载荷下,ACL横断不会显着影响胫骨旋转,但会增加胫骨前移。方法:将十二具尸体膝盖(捐献者的平均年龄[和死亡时的标准差],为65.0 +/- 10.5岁)安装在定制的测试设备中,以模拟单腿枢轴着地。在存在五个跨膝肌力的情况下,以压缩力(约800 N),屈曲力矩(约40 N-m)和胫骨轴向扭矩(约17 N-m)将复合脉冲载荷施加到胫骨远端。安装在ACL内侧的差分可变磁阻传感器测量了相对应变。膝关节最初处于15度屈曲度,在进行五次压缩和屈曲力矩(基线)联合负荷试验后,进行了六项试验,同时增加了胫骨内部或外部扭矩(内部或外部负荷),然后进行了六项基线试验被执行。然后将ACL切开,重复六项基线试验,然后进行六项关于内部或外部负荷条件的试验,以最初导致较大的相对ACL应变为准。胫股运动学通过光电测量。用非参数Wilcoxon符号秩检验检验结果。结果:ACL横断后,标准化的胫骨内旋转增加明显但很小(0.7度/ Nm +/- 0.3度/ Nm至0.8度/ Nm +/- 0.3度/ Nm,p = 0.012),而前胫骨平移显着增加(3.8 +/- 2.9至7.0 +/- 2.9 mm,p = 0.017)。结论:在与模拟枢轴着陆相关的较大作用力下,ACL横切导致胫骨内旋转小幅增加,相当于动态旋转阻力降低13%,但它导致胫骨前平移显着增加。

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