首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Patellofemoral kinematics in mobile-bearing and fixed-bearing posterior stabilised total knee replacements: a cadaveric study.
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Patellofemoral kinematics in mobile-bearing and fixed-bearing posterior stabilised total knee replacements: a cadaveric study.

机译:移动式和固定式后路稳定全膝关节置换的股运动学:尸体研究。

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PURPOSE: The aim was to compare the patellar kinematics in the normal knee, fixed-bearing (FB) and mobile-bearing total knee replacement (MB-TKR). The hypothesis that a mobile-bearing TKR has a more natural patellar movement was tested. METHODS: Computer navigation was used to track the patella in nine whole lower extremities in the natural knee and in the same knee with a posterior stabilised FB-TKR and a posterior stabilised MB-TKR from 0 degrees to 90 degrees flexion. The form and position of the trochlea in the natural knee and the patellar groove of the TKR femoral component was also analysed. RESULTS: There were no differences between the FB and MB-TKRs. But the patella in the TKRs at flexion angles of more than 50 degrees had a more medial tilt compared to the natural knee. The patella of the natural knee tended to rotate externally with flexion, this was not seen in both TKR types. There were no significant differences in absolute mediolateral translation nor in translation relative to the patellar groove. During flexion, the patella lost contact with its groove earlier in the TKRs. The radius of the patellar groove of the femoral component was larger. The groove extended more superiorly and less far posteriorly, it was also positioned further laterally compared to the natural knee. CONCLUSIONS: There are subtle kinematic differences in patellar tracking between the natural knee and a TKR presumably due to differences in the shape and position of the patellar groove. There are no kinematic differences in patellar movement between the FB- and MB-TKR.
机译:目的:目的是比较正常膝关节,固定支撑(FB)和活动支撑全膝关节置换术(MB-TKR)的pa骨运动学。测试了带有移动轴承的TKR具有更自然的pa骨运动的假说。方法:计算机导航用于追踪自然膝盖和同一膝盖中九个下肢的the骨,后稳定的FB-TKR和后稳定的MB-TKR从0度到90度屈曲。还分析了自然膝关节中滑车的形式和位置以及TKR股骨组件的pa骨沟。结果:FB和MB-TKR之间没有差异。但是,与自然膝关节相比,TKRs的at骨在超过50度的屈曲角度时具有更大的内侧倾斜度。天然膝盖的骨倾向于随着屈曲向外旋转,这在两种TKR类型中均未见。绝对的lateral外侧平移和相对于tell骨沟的平移均无显着差异。在屈曲过程中,the骨在TKR中较早失去与凹槽的接触。股骨component骨沟的半径较大。与自然膝盖相比,该凹槽的延伸程度更高,而向后延伸的距离较小。结论:自然膝关节和TKR之间的tracking骨运动学上存在细微的运动学差异,大概是由于the骨沟的形状和位置的差异。 FB-TKR和MB-TKR之间的tell骨运动没有运动学差异。

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