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The Use of Finite Element Analysis to Enhance Research and Clinical Practice in Orthopedics

机译:有限元分析在骨科研究和临床实践中的应用

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Finite element analysis (FEA) is a very powerful tool for the evaluation of biomechanics in orthopedics. Finite element (FE) simulations can effectively and efficiently evaluate thousands of variables (such as implant variation, surgical techniques, and various pathologies) to optimize design, screening, prediction, and treatment in orthopedics. Additionally, FEA can be used to retrospectively evaluate and troubleshoot complications or failures to prevent similar future occurrences. Finally, FE simulations are used to evaluate implants, procedures, and techniques in a time-and cost-effective manner. In this work, an overview of the development of FE models is provided and an example application is presented to simulate knee biomechanics for a specimen with medial meniscus insufficiency. FE models require the development of the geometry of interest, determination of the material properties of the tissues simulated, and an accurate application of a numerical solver to produce an accurate solution and representation of the field variables. The objectives of this work are to introduce the reader to the application of FEA in orthopedic analysis of the knee joint. A brief description of the model development process as well as a specific application to the investigation of knee joint stability in geometries with normal or compromised medial meniscal attachment is included. Significant increases in stretch of the anterior cruciate ligament were predicted in specimens with medial meniscus insufficiency (such behavior was confirmed in corresponding biomechanical testing). It can be concluded from this work that FE analysis of the knee can provide significant new information with which more effective clinical decisions can be made.
机译:有限元分析(FEA)是评估骨科生物力学的非常强大的工具。有限元(FE)仿真可以有效地评估成千上万的变量(例如植入物变化,手术技术和各种病理学),以优化骨科的设计,筛查,预测和治疗。此外,FEA可用于回顾性评估并发症或故障并排除故障,以防止将来再次发生类似事件。最后,有限元模拟可用于以时间和成本有效的方式评估植入物,程序和技术。在这项工作中,提供了有限元模型开发的概述,并提供了一个示例应用程序来模拟半月板内侧不足的标本的膝关节生物力学。有限元模型需要开发感兴趣的几何形状,确定模拟组织的材料特性,并精确应用数值求解器以产生场变量的精确解和表示。这项工作的目的是向读者介绍有限元分析在膝关节骨科分析中的应用。包括对模型开发过程的简短描述,以及在正常或受损的半月板附着的几何形状中研究膝关节稳定性的特定应用。在内侧半月板功能不全的标本中,预计前交叉韧带的伸展会显着增加(这种行为在相应的生物力学测试中得到了证实)。从这项工作可以得出结论,膝关节的有限元分析可以提供重要的新信息,通过这些信息可以做出更有效的临床决策。

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