首页> 外文期刊>Journal of Biomechanics >Patellofemoral interactions in walking, stair ascent, and stair descent using a virtual patella model.
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Patellofemoral interactions in walking, stair ascent, and stair descent using a virtual patella model.

机译:使用虚拟骨模型在步行,楼梯上升和楼梯下降中的股骨相互作用。

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摘要

Restoration of normal patella kinematics is an important clinical outcome of total knee arthroplasty. Failure of the patella within total knee systems has been documented and, upon occurrence, often necessitates revision surgery. It is thus important to understand patella mechanics following implantation, subject to load states that are typically realized during walking and other gaits. Here, a computational model of the patella is developed and used to examine the effects of walking, stair ascent, and stair descent on the development of stress and contact pressure in the patella throughout the gait cycle. Motion of the patella was governed by a combination of kinematic and force control, based on knee flexion and patellofemoral joint reaction force data from the literature. Unlike most previous analyses of full gait, quasi-static equilibrium was enforced throughout the cycle. Results indicate that, though peak forces vary greatly between the three gaits, maximum contact pressure and von Mises stress are roughly equivalent. However, contact area is larger in stair ascent and descent than walking, as patellofemoral loading, implant geometry, and polyethylene yield increase conformity between the femoral component and patella. Additionally, maximum contact pressure does not coincide with maximum load except for the case of walking. Though specific to the implant design considered here, this result has important ramifications for patella testing and emphasizes the need to characterize patella mechanics throughout gait.
机译:恢复正常的骨运动学是全膝关节置换术的重要临床结果。 knee骨在整个膝关节系统内的衰竭已有记录,一旦发生,通常需要翻修手术。因此,重要的是要了解植入后,骨的力学状况,这些to骨会受到行走和其他步态通常会出现的负荷状态的影响。在这里,developed骨的计算模型被开发出来,并用于检查步行,楼梯上升和楼梯下降对整个步态周期中骨应力和接触压力的发展的影响。 knee骨运动通过运动学和力控制相结合来控制,该控制基于文献中的膝关节屈曲和pa股关节反作用力数据。与以前对大多数步态进行的大多数分析不同,准静态平衡在整个周期中都得到了加强。结果表明,尽管三个步态之间的峰值力相差很大,但最大接触压力和冯·米塞斯应力却大致相等。但是,随着pa股的载荷,植入物的几何形状和聚乙烯的产量增加了股骨组件与骨之间的贴合性,在楼梯的上升和下降中的接触面积大于步行。此外,除了步行以外,最大接触压力与最大负载不符。尽管此处特定于植入物设计,但该结果对骨测试有重要影响,并强调了在整个步态中表征ize骨力学的必要性。

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