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Biomechanical Effect of UHMWPE and CFR-PEEK Insert on Tibial Component in Unicompartmental Knee Replacement in Different Varus and Valgus Alignments

机译:UHMWPE和CFR-PEEK在不同VALGUS对齐中胫骨组分胫骨组分的生物力学作用

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摘要

The current study aims to analyze the biomechanical effects of ultra-high molecular weight polyethylene (UHMWPE) and carbon-fiber-reinforced polyetheretherketone (CFR-PEEK) inserts, in varus/valgus alignment, for a tibial component, from 9° varus to 9° valgus, in unicompartmental knee replacement (UKR). The effects on bone stress, collateral ligament force, and contact stress on other compartments were evaluated under gait cycle conditions, by using a validated finite element model. In the UHMWPE model, the von Mises’ stress on the cortical bone region significantly increased as the tibial tray was in valgus >6°, which might increase the risk of residual pain, and when in valgus >3° for CFR-PEEK. The contact stress on other UHMWPE compartments decreased in valgus and increased in varus, as compared to the neutral position. In CFR-PEEK, it increased in valgus and decreased in varus. The forces on medial collateral ligaments increased in valgus, when compared to the neutral position in UHMWPE and CFR-PEEK. The results indicate that UKR with UHMWPE showed positive biomechanical outputs under neutral and 3° varus conditions. UKR with CFR-PEEK showed positive biomechanical outputs for up to 6° varus alignments. The valgus alignment should be avoided.
机译:目前的研究旨在分析超高分子量聚乙烯(UHMWPE)和碳纤维增强聚醚醚酮(CFR-PEEK)插入物,在胫骨组分中,从9°VARUS到9的生物力学效应°Valgus,在Unicompartmmental膝盖替换(UKR)中。通过使用验证的有限元模型,在步态循环条件下评估对骨应力,侧支韧带力和接触应力的影响。在UHMWPE模型中,随着胫骨托盘的岩皮球菌的压力显着增加,因为胫骨托盘在旋流> 6°,这可能会增加残留疼痛的风险,而在旋流中的止痛感> 3°的CFR-PEEK。与中性位置相比,其他UHMWPE隔室上的接触应力降低了旋流性并在瓦鲁斯中增加。在CFR-PEEK中,它在Valgus中增加并在varus下降。与UHMWPE和CFR-PEEK中的中性位置相比,内侧副韧带上的内侧辅助韧带增加。结果表明,具有UHMWPE的UKR在中性和3°官能下显示出阳性生物力学输出。与CFR-PEEK的UKR显示了正面的生物力学输出,可达6°差别对齐。应避免止口节对齐。

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