首页> 外文期刊>Asia-Pacific Journal of Sports Medicine, Arthroscopy, Rehabilitation and Technology >Evaluation of the intraoperative kinematics during double-bundle anterior cruciate ligament reconstruction using a navigation system
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Evaluation of the intraoperative kinematics during double-bundle anterior cruciate ligament reconstruction using a navigation system

机译:使用导航系统评估双束前交叉韧带重建术中的运动学

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Background/objectiveThere is controversy regarding the biomechanical function of the anteromedial (AM) and posterolateral (PL) bundles in isolated tibiofemoral rotation during double-bundle anterior cruciate ligament (ACL) reconstruction. This study aimed to evaluate the biomechanical function of the AM and PL bundles of the ACL using a computer navigation system.MethodsThis study involved 15 patients who underwent double-bundle ACL reconstruction. Anteroposterior and isolated rotational knee laxity were measured with a navigation system. The measurements were performed four times, namely, before fixation, after temporary PL bundle fixation, after AM bundle fixation, and after double-bundle reconstruction. With knee flexion ranging from 20° to 60°, we continuously measured the anterior tibial displacement under an anterior drawer stress (100?N using a spring balance). The total range of tibial rotation was also measured under an external and internal rotational torque of 3 Nm.ResultsFixation of either the AM or the PL bundle significantly reduced the anteroposterior displacement at all knee flexion angles. Although the anteroposterior displacement after AM bundle fixation was relatively similar throughout the range of motion (2.4–3.2?mm), the anteroposterior displacement after PL bundle fixation increased continuously with knee flexion (2.2–4.6?mm). With respect to the total range of tibial rotation under external and internal rotational torque, there was no significant difference between AM and PL bundle fixation throughout the range of motion. The total range of tibial rotation was significantly reduced only on double-bundle reconstruction at 20° and 25° knee flexion compared to the pre-reconstruction range (P?=?0.015 and 0.036, respectively).ConclusionThe AM and PL bundles function differently for controlling anterior knee laxity throughout the range of motion. The function of the AM and PL bundles was similar for controlling isolated tibiofemoral rotation. Isolated tibiofemoral rotation was significantly controlled only on double-bundle reconstruction at knee flexion angles of 20° and 25°.
机译:背景/目的在双束前交叉韧带(ACL)重建过程中,孤立的胫股骨旋转中前内侧(AM)和后外侧(PL)束的生物力学功能存在争议。这项研究旨在通过计算机导航系统评估ACL的AM和PL束的生物力学功能。方法该研究涉及15例接受了双束ACL重建的患者。使用导航系统测量前后位和孤立的旋转膝关节松弛度。测量进行了四次,即在固定之前,在临时PL束固定之后,在AM束固定之后以及在双束重建之后。膝关节屈曲范围为20°到60°,我们在前抽屉应力(使用弹簧秤平衡力为100?N)下连续测量胫骨的前移。还在3 Nm的内外旋转扭矩下测量了胫骨旋转的总范围。结果固定AM或PL束可显着减少所有膝关节屈曲角度的前后移位。尽管AM束固定后的前后位移在整个运动范围内(2.4-3.2?mm)相对相似,但PL束固定后的前后位移随着膝关节屈曲(2.2-4.6?mm)连续增加。关于在外部和内部旋转扭矩作用下胫骨旋转的总范围,在整个运动范围内,AM和PL束固定之间没有显着差异。与重建前的范围相比,仅在膝关节屈曲20°和25°进行双束重建时,胫骨旋转的总范围才显着减少(分别为P?=?0.015和0.036)。在整个运动范围内控制前膝关节松弛。 AM和PL束的功能类似于控制孤立的胫股旋转。仅在膝关节屈曲角度为20°和25°的双束重建中,显着控制了孤立的胫股旋转。

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