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首页> 外文期刊>Bio-medical materials and engineering >Preservation of femoral and tibial coronal alignment to improve biomechanical effects of medial unicompartment knee arthroplasty: Computational study
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Preservation of femoral and tibial coronal alignment to improve biomechanical effects of medial unicompartment knee arthroplasty: Computational study

机译:保护股骨质冠状冠状四分之一,提高内侧膝关节间关节置换术的生物力学效应:计算研究

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BACKGROUND:Medial unicompartmental knee arthroplasty (UKA) could be concerned with wear of the cartilage or the wear in the polyethylene (PE) insert. Mechanical alignment determines the biomechanical effect in the long term. However, previous computational studies all found that femoral and tibial components alignment in the UKA were rare, and the results varied. OBJECTIVE:The purpose of this study was to evaluate the biomechanical effect of the femoral and tibial component coronal alignment in varus and valgus conditions through computational simulation. METHODS:A three-dimensional finite element model of the intact knee was constructed from medical image data of one healthy subject. A medial UKA model of neutral position and various coronal components was developed from the intact knee joint model. The tibial varus-femoral valgus and tibial valgus-femoral varus conditions were analyzed with parallel component angles of 3°, 6° and 9° by using validated finite element models. We considered the contact stresses in the PE inserts and articular cartilage and the force on collateral ligament under gait cycle condition. RESULTS:Compared to the contact stress in the neutral position model, the contact stress on the PE insert increased in both tibial varus-femoral valgus and tibial valgus-femoral varus models. These trends were also observed in the case of the articular cartilage in remain compartment. However, the contact stress on the PE insert and articular cartilage increased largely in the tibial valgus-femoral varus model than in the tibial varus-femoral valgus model. The forces on the medial and lateral collateral ligaments increased in the tibial valgus-femoral varus model, whereas in the tibial varus-femoral valgus model, the forces decreased compared to the forces in the neutral position. The force on the anterior lateral ligament and popliteofibular ligament increased in the tibial varus-femoral valgus model as compared to the neutral position. CONCLUSIONS:Our study suggests that neutral alignment or less than 3° tibial varus-femoral valgus alignment in the coronal plane can be recommended in medial UKA to reduce the postoperative complications and to enhance the life expectancy of implants.
机译:背景:内侧独一无二的膝关节置换术(UKA)可以关注软骨磨损或聚乙烯(PE)插入物中的磨损。机械对准在长期内决定了生物力学效果。然而,以前的计算研究发现,UKA中的股骨和胫骨分量对齐是罕见的,结果变化。目的:本研究的目的是通过计算模拟评估股骨和胫骨分量冠状对准的生物力学效应。方法:从一个健康受试者的医学图像数据构建完整膝关节的三维有限元模型。从完整的膝关节模型开发了一个中立位置和各种冠状部件的内侧UKA模型。通过使用验证的有限元件模型,通过3°,6°和9°的平行分量角分析胫骨毒性股骨斜缩和胫骨旋流旋转术。我们认为PE插入件和关节软骨中的接触应力以及步态循环条件下的侧韧带的力。结果:与中性位置模型中的接触应力相比,PE插入件上的接触应力在胫骨毒性股背和胫骨旋流型股骨型模型中增加。在保持隔间的关节软骨的情况下也观察到这些趋势。然而,PE插入物和关节软骨上的接触应力大大增加在胫骨旋流 - 股骨VARUUS模型中,而不是胫骨varus - 股骨旋流模型。内侧和侧侧侧侧韧带上的力在胫骨 - 股骨旋流模型中增加,而在胫骨脉搏 - 股骨旋流模型中,与中性位置中的力相比,力减少。与中性位置相比,前侧侧韧带和唾液瓣膜韧带的力增加。结论:我们的研究表明,在内侧UKA中,可以推荐在冠状平面中的中性对准或少于3°的胫骨血管旋流旋流对准,以减少术后并发症,并增强植入物的预期寿命。

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