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COMPUTATIONALLY EFFICIENT, EXPLICIT FINITE ELEMENT MODEL FOR EVALUATION OF PATELLOFEMORAL MECHANICS

机译:基于髌户髌型力学评估的计算高效,显式有限元模型

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Patient-specific finite element (FE) models can provide clinically relevant information about contact mechanics and kinematics that may be difficult or infeasible to obtain otherwise, and have potential to guide pre-operative planning. However, substantial uncertainty in model variables exists in patient-specific modeling, and suggests a probabilistic approach. Although efficient probabilistic methodology has been recently developed, multiple analyses are still required, and computational time for a fully deformable FE model throughout a flexion cycle has typically made this impractical. Therefore, the goal of the present study was to develop an explicit FE model of the patellofemoral joint with deformable cartilage and deformable, wrapping extensor tendons, and to compare kinematic and contact mechanics results with a model modified for computational efficiency. The efficient model incorporated rigid femoral and patellar cartilage representation with an optimized contact pressure - surface overclosure relationship, and composite-fiber tendons.
机译:特定于患者的有限元(FE)模型可以提供有关接触机械和运动学的临床相关信息,可能难以或不可行地获得,并且有可能引导术前规划。然而,在特定于患者的建模中存在模型变量的实质性不确定性,并提出了一种概率方法。尽管最近已经开发了有效的概率方法,但仍然需要多次分析,并且在整个屈曲周期中完全变形的Fe模型的计算时间通常使得这种不切实际。因此,本研究的目的是开发与变形的软骨和变形,包装伸肌腱髌股关节的显式有限元模型,并与修改计算效率的模型来比较运动和接触力学的结果。高效模型采用刚性股骨和髌骨软骨表示,具有优化的接触压力 - 表面过缩关系,以及复合纤维肌腱。

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