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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine >The effects of trochlear groove geometry on patellofemoral joint stability‐a computer model study
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The effects of trochlear groove geometry on patellofemoral joint stability‐a computer model study

机译:滑车槽几何形状对pa股关节稳定性的影响-计算机模型研究

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摘要

The effect of the variation in the femoral groove geometry on patellofemoral joint stability was studied using a two-dimensional transverse plane model with deformable articular surfaces. The femoral and patellar bony structures were modelled as rigid bodies with their profiles expressed by splines. The articular cartilage was discretized into compression springs, distributed along the femoral and patellar profiles, based on the rigid-body spring model. The medial and lateral retinacula were modelled as linear tensile springs, and the quadriceps muscles and patellar tendon as strings with known tension. The anatomical data were obtained from the transverse plane magnetic resonance images of a normal knee flexed at 20° and from the literature. A dynamic analysis approach was employed to solve the governing equations of the model, i.e. three static equilibrium equations of the patella and a constraint equation for each cartilage spring, explicitly. The results of the model suggest that alteration of the sulcus angle from 139° to 169° causes a lateral shift and tilt of less than 3 mm and 4°. This effect increased slightly with increasing total quadriceps force, however, to significantly more than 7 mm and 18° respectively when the medial retinaculum was released. It was suggested that this might be the combined effect of the medial retinaculum deficiency and trochlear dysplasia that is responsible for patellar subluxation and, particularly, dislocation disorders.
机译:使用具有可变形关节面的二维横断面模型研究了股沟几何形状变化对pa股关节稳定性的影响。股骨和pa骨的骨结构被建模为刚体,其轮廓由样条曲线表示。根据刚体弹簧模型,将关节软骨离散为压缩弹簧,沿着股骨和pa骨轮廓分布。内侧和外侧视网膜被建模为线性拉伸弹簧,股四头肌和pa腱建模为具有已知拉伸力的弦。解剖数​​据从屈曲20°的正常膝盖的横断面磁共振图像获得,并从文献中获得。动态分析方法被用来求解模型的控制方程,即三个three骨的静态平衡方程和每个软骨弹簧的约束方程。该模型的结果表明,槽角从139°改变为169°会引起横向偏移和倾斜,分别小于3 mm和4°。随着总股四头肌力量的增加,这种作用略有增加,但是,当释放内侧视网膜的时候,这种作用分别明显超过7mm和18°。有人认为这可能是造成re骨半脱位,尤其是脱位障碍的内侧视网膜缺乏症和滑车不典型增生的综合作用。

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