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首页> 外文期刊>Clinical biomechanics >Alterations in patellofemoral kinematics following vastus medialis transection in the anterior cruciate ligament deficient rabbit knee
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Alterations in patellofemoral kinematics following vastus medialis transection in the anterior cruciate ligament deficient rabbit knee

机译:前交叉韧带缺陷兔膝内侧vast横断后pa股运动学的变化

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Background Anterior cruciate ligament deficiency and quadriceps muscle weakness are considered to be important risk factors for aberrant patellar tracking and subsequent patellofemoral osteoarthritis. However, data from in vivo experiments looking at dynamic patellar joint kinematics and muscle force are scarce. Therefore, the purpose of this study was to evaluate the effects of anterior cruciate ligament transection and loss of vastus medialis force on patellar tracking in the rabbit knee in vivo. Methods Eight skeletally mature New Zealand White Rabbits, weighing 6.0 kg (0.6 kg standard deviation) were used. The experimental trials consisted of active, concentric and eccentric movements of the knee joint. Measurements were performed with the intact, the anterior cruciate ligament deficient, and the vastus medialis transected knee. Patellofemoral kinematics (shift, rotation) were quantified from high speed video. Findings Following anterior cruciate ligament transection, patellar tracking occurred more laterally, and caused a significant lateral rotation of the patella. The addition of vastus medialis transection did not alter patellar tracking or rotation significantly for any of the force-matched experimental conditions. Interpretation The loss of the anterior cruciate ligament results in lateral patellar shift and rotation while the loss of vastus medialis muscle force does not affect patellar tracking or rotation in the anterior cruciate ligament deficient knee. We suggest that the current results should be considered carefully in future interpretations of knee extensor imbalance. More research is needed to describe the contribution of vastus medialis muscle strength to medial patellofemoral stability and confirm these results in the human knee.
机译:背景技术前十字韧带缺乏和股四头肌无力被认为是pa骨异常追踪和随后的股osteo骨关节炎的重要危险因素。但是,有关动态dynamic骨运动学和肌肉力量的体内实验数据很少。因此,本研究的目的是评估兔体内前交叉韧带横断和腓肠肌内侧力的损失对pa骨跟踪的影响。方法:使用八只骨骼成熟的新西兰白兔,体重6.0千克(标准偏差0.6千克)。实验试验包括膝关节的主动,同心和偏心运动。在完整,前交叉韧带缺损和股内侧横切膝盖的情况下进行测量。从高速视频中量化股运动学(移位,旋转)。研究结果在前交叉韧带横断后,pa骨跟踪发生在更外侧,并导致the骨发生明显的侧向旋转。在任何力匹配的实验条件下,增加股内侧横切均不会显着改变pa骨的追踪或旋转。解释前十字韧带的丧失会导致lateral骨外侧移位和旋转,而腓肠肌内侧肌力的丧失不会影响前十字韧带不足的膝盖的pa骨跟踪或旋转。我们建议在将来对膝伸肌不平衡的解释中应仔细考虑当前结果。需要更多的研究来描述股内侧肌力量对pa股内侧稳定性的贡献,并在人类膝盖中证实这些结果。

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