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首页> 外文期刊>ScientificWorldJournal >The Effect of Malrotation of Tibial Component of Total Knee Arthroplasty on Tibial Insert during High Flexion Using a Finite Element Analysis
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The Effect of Malrotation of Tibial Component of Total Knee Arthroplasty on Tibial Insert during High Flexion Using a Finite Element Analysis

机译:使用有限元分析在高屈曲期间膝关节置换术胫骨成形术中胫骨成形术治疗胫骨插入物的影响

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One of the most common errors of total knee arthroplasty procedure is a malrotation of tibial component. The stress on tibial insert is closely related to polyethylene failure. The objective of this study is to analyze the effect of malrotation of tibial component for the stress on tibial insert during high flexion using a finite element analysis. We used Stryker NRG PS for analysis. Three different initial conditions of tibial component including normal, 15° internal malrotation, and 15° external malrotation were analyzed. The tibial insert made from ultra-high-molecular-weight polyethylene was assumed to be elastic-plastic while femoral and tibial metal components were assumed to be rigid. Four nonlinear springs attached to tibial component represented soft tissues around the knee. Vertical load was applied to femoral component which rotated from 0° to 135° while horizontal load along the anterior posterior axis was applied to tibial component during flexion. Maximum equivalent stresses on the surface were analyzed. Internal malrotation caused the highest stress which arose up to 160% of normal position. External malrotation also caused higher stress. Implanting prosthesis in correct position is important for reducing the risk of abnormal wear and failure.
机译:总膝关节置换术术的最常见误差之一是胫骨组分的恶性。胫骨插入物的应力与聚乙烯失效密切相关。本研究的目的是分析使用有限元分析在高屈曲期间胫骨部件对胫骨粘附应激的影响。我们使用Stryker NRG PS进行分析。分析了三种不同的胫骨组分初始条件,包括正常,15°内部的内部染色体和15°的外部靶标。假设由超高分子量聚乙烯制成的胫骨插入物是弹性塑料,而股骨和胫骨金属部件被认为是刚性的。附接到胫骨部件的四个非线性弹簧代表膝盖周围的软组织。垂直载荷施加到股骨部件,股骨部件0°至135°,同时在屈曲期间施加沿着前后轴线的水平载荷。分析了表面上的最大当量应力。内部恶性导致最高应力,其占正常位置的160%。外部恶性也引起了更高的压力。植入正确位置的假体对于降低异常磨损和失败的风险是重要的。

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