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Anterior cruciate ligament rupture translates the axes of motion within the knee.

机译:前十字韧带破裂使膝盖内的运动轴平移。

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Objective. To quantify the dynamic effects of anterior cruciate ligament deficiency on human knee joint motion. Design. Three-dimensional motion was assessed by measuring the kinematics of intact and anterior cruciate ligament deficient knee joint specimens during simulated flexion-extension cycles. Background. It is known that the anterior cruciate ligament plays an important role in controlling three-dimensional knee joint motion. Nevertheless, dynamic effects of deficiency are not fully understood. Methods. Six cadaveric knees were tested in a knee joint motion and loading apparatus prior to and after anterior cruciate ligament resection. To determine if the kinematic results depended on additional loading, internal and external rotation moments of 3.4 Nm were axially applied to the tibia. The kinematics were analysed in terms of finite helical axes. Results. Sectioning the anterior cruciate ligament had little effect on the orientations of the finite helical axes. However, applying moments did affect the axes orientation. In contrast, relative translations of the axes were significantly affected by the deficiency for all rotational moments applied. Referring to the individual knee anatomy the largest translation of 12.5 mm (median) occurred in medial/lateral direction. Conclusions. Anterior cruciate ligament rupture primarily causes a translation of the finite helical axes in medial/lateral direction. Consequently, increased anterior excursion of the tibia occurs (subluxation) and therefore dynamic instability.Relevance This study provides a new perception of kinematic alterations after anterior cruciate ligament rupture. This can be an aid to select clinical treatment and can help to understand contrary outcomes.
机译:目的。量化前十字韧带不足对人膝关节运动的动态影响。设计。通过在模拟的屈伸周期中测量完整和前交叉韧带不足的膝关节标本的运动学来评估三维运动。背景。已知前交叉韧带在控制三维膝关节运动中起重要作用。然而,缺乏的动态影响尚不完全清楚。方法。在前十字韧带切除术之前和之后,在膝关节运动和负载装置中测试了六个尸体膝盖。为了确定运动学结果是否取决于附加载荷,将3.4 Nm的内部和外部旋转力矩轴向施加到胫骨上。根据有限的螺旋轴分析了运动学。结果。切片前交叉韧带对有限螺旋轴的方向影响不大。但是,施加力矩确实会影响轴的方向。相反,所有施加的旋转力矩的不足都会显着影响轴的相对平移。参考单个膝盖解剖结构,最大的12.5 mm(中位)平移发生在内侧/外侧方向。结论前十字韧带破裂主要导致有限的螺旋轴在内侧/外侧方向平移。因此,胫骨前移位增加(半脱位),从而引起动态不稳定性。相关性本研究提供了对前交叉韧带断裂后运动学变化的新认识。这可以帮助选择临床治疗方法,并有助于理解相反的结果。

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