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The effect of isolated popliteus tendon complex injury on graft force in anterior cruciate ligament reconstructed knees

机译:孤立的lite肌腱复合损伤对前交叉韧带重建膝关节移植力的影响

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摘要

Failure to diagnose injury to the posterolateral structures has been found to increase the forces experienced by the anterior cruciate ligament (ACL) and ACL grafts which may cause their subsequent failure. An isolated injury to the popliteus complex (PC) consisting of the popliteus tendon and popliteofibular ligament is not uncommon. Therefore, the purpose of this study was to discover if an isolated injury to the PC can significantly affect the forces experienced by the ACL graft under external loading conditions. We hypothesised that, under external tibial torque, the ACL graft will experience a significant increase in force, in knees with PC injury compared to the intact PC condition. Under varus tibial torque (10 N m), we observed minimal changes in the varus tibial rotation due to isolated sectioning of the PC in an ACL reconstructed knee (P > 0.05). Consequently, no significant increase in the ACL graft force was observed under varus tibial torque. In contrast, sectioning the PC resulted in a significant increase in the external tibial rotation compared to the intact PC knee condition under the external rotational tibial torque (5 N m) at all flexion angles (P < 0.05). These changes in kinematics under external tibial torque were manifested as elevated ACL graft forces at all selected flexion angles (P < 0.05). Prompt diagnosis of isolated PC injury and its treatment are warranted to prevent potential failure of ACL reconstruction.
机译:已发现无法诊断后外侧结构的损伤会增加前十字韧带(ACL)和ACL移植物所承受的力,这可能会导致其随后的失败。由the肌腱和pop腓韧带组成的pop肌复合体(PC)的孤立损伤并不少见。因此,本研究的目的是发现孤立的PC损伤是否会显着影响外部负载条件下ACL移植物承受的力。我们假设,在胫骨外力作用下,与完整的PC状态相比,ACL移植物在患有PC损伤的膝盖中会经历力的显着增加。在胫骨内翻扭矩(10 N m)下,我们观察到由于ACL重建膝关节中PC的孤立切片而造成的胫骨内翻旋转的最小变化(P> 0.05)。因此,在胫骨内翻扭矩下,ACL移植力没有明显增加。相比之下,与完整的PC膝关节情况相比,在所有屈曲角度下胫骨外部旋转扭矩(5 N m)时,对PC进行切片导致胫骨外部旋转显着增加。这些运动学变化在外部胫骨扭矩下表现为在所有选定的屈曲角度下ACL移植力均升高(P <0.05)。应及时诊断孤立的PC损伤及其治疗方法,以防止ACL重建的潜在失败。

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