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Computational Model Validation of Contact Mechanics in Total Ankle Arthroplasty

机译:总踝关节置换术联系机械的计算模型验证

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ABSTRACT Revision rates in total ankle arthroplasty (TAA) are nearly double compared with hip or knee arthroplasty procedures. Contact mechanics for metal–polyethylene articulation in TAA is critical due to the reduced size of the implant and higher expected load, compared with a hip or knee joint. This study was focused on developing a validated computational model to predict contact area in a polyethylene tibial bearing articulating with a metallic talar component in a bicondylar TAA design. Contact area was evaluated at five different flexion angles in an experimental test and in a computational model, per ASTM F2665. The overall contact area values predicted in the computational model matched closely (within 8%) with that measured in the comparator; well within the range reported in the literature. The credibility of the model to sufficiently predict the outputs relative to the experimental data was discussed using the guidelines provided by the recently published ASME V&V 40‐2018 standard. Various sensitivities associated with both the model and the comparator, were explored. It was concluded that the validated modeling approach presented in this study demonstrated sufficient accuracy to support the use of modeling for evaluation of contact area of TAA designs. ? 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 38:1063‐1069, 2020
机译:摘要与髋关节或膝关节成形术手术相比,踝关节间关节成形术(TAA)的抽吸修订率几乎翻倍。与髋关节或膝关节相比,TAA在TAA中金属聚乙烯关节的接触力学是由于植入物的尺寸和较高的载荷尺寸较低。该研究专注于开发经过验证的计算模型,以预测在双蒙德拉TAA设计中用金属缩略图铰接的聚乙烯胫骨轴承中的接触面积。在实验测试中,在实验测试中和每次ASTM F2665的计算模型中以五种不同的屈曲角度评估接触区域。计算模型中预测的整体接触面积值与比较器中测量的匹配密切(8%以内);在文献中报告的范围内。使用最近发布的ASME V&amp的准则,讨论了模型的可信度,以充分预测相对于实验数据的输出; V 40-2018标准。探讨了与模型和比较器相关的各种敏感性。得出结论,本研究中提出的验证建模方法表明了足够的准确性,以支持使用建模进行评估,以评估TAA设计的接触面积。还2019年骨科研究会。由Wiley期刊出版,Inc.J Orthop Res 38:1063-1069,2020

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