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Sagittal plane biomechanics cannot injure the ACL during sidestep cutting.

机译:矢状面生物力学不能在进行旁步切割时损伤ACL。

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Background. Knee joint sagittal plane forces are a proposed mechanism of anterior cruciate ligament injury during sport movements such as sidestep cutting. Ligament force magnitudes for these movements however, remain unknown. The need to examine injury-causing events suggests elucidation via model-based investigations is possible. Using this approach, the current study determined whether sagittal plane knee loading during sidestep cutting could in isolation injure the anterior cruciate ligament. Methods. Experiments were performed on subject-specific forward dynamic musculoskeletal models, generated from data obtained from 10 male and 10 female athletes. Models were optimized to simulate subject-specific cutting movements. Random perturbations (n=5000) were applied to initial contact conditions and quadriceps/hamstrings activation levels to simulate their effect on peak 3D knee loads. Injury via the sagittal plane mechanism was based on the criterion of an anterior drawer force greater than 2000 N. Findings. Realistic neuromuscular perturbations produced significant increases in external knee anterior force and valgus and internal rotation moments. Peak anterior drawer force never exceeded 2000 N in any model, and thus failed to cause anterior cruciate ligament injuries. Valgus loads reached values that were high enough to rupture the ligament, occurring more frequently in females than in males. Interpretation. Sagittal plane knee joint forces cannot rupture the anterior cruciate ligament during sidestep cutting. The interaction between muscle and joint mechanics and external ground reaction forces in this plane, places a ceiling on ligament loads. Valgus loading is a more likely injury mechanism, especially in females. Modifying sagittal plane biomechanics will thus unlikely contribute to the prevention of anterior cruciate ligament injuries.
机译:背景。膝关节矢状面力是在运动运动(例如,切开脚步)过程中前十字韧带损伤的一种拟议机制。然而,这些运动的韧带力大小仍然未知。需要检查造成伤害的事件表明,可以通过基于模型的研究进行阐明。使用这种方法,当前的研究确定了在进行侧向切割时矢状面膝关节负荷是否可以单独损伤前交叉韧带。方法。实验是在特定于受试者的向前动态肌肉骨骼模型上进行的,该模型是根据从10位男性和10位女性运动员获得的数据生成的。优化模型以模拟特定对象的切割运动。将随机扰动(n = 5000)应用于初始接触条件和股四头肌/ ham绳肌激活水平,以模拟其对峰值3D膝盖负荷的影响。通过矢状面机制的损伤是基于前抽屉力大于2000 N的判据。现实的神经肌肉摄动使膝关节外前屈,外翻和内旋力矩明显增加。在任何模型中,前抽屉的峰值力从未超过2000 N,因此未能引起前交叉韧带损伤。外翻负荷达到足以使韧带破裂的值,女性比男性多发生。解释。在进行侧向切割时,矢状面的膝关节力不会破裂前交叉韧带。肌肉和关节力学之间的相互作用以及该平面中的外部地面反作用力为韧带载荷设置了上限。外翻负荷是一种更可能的伤害机制,尤其是在女性中。因此,修改矢状面生物力学不太可能有助于预防前交叉韧带损伤。

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