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Differences in the stress distribution in the distal femur between patellofemoral joint replacement and total knee replacement: a finite element study

机译:em股关节置换与全膝置换之间股骨远端应力分布的差异:有限元研究

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摘要

Background: Patellofemoral joint replacement is a successful treatment option for isolated patellofemoralosteoarthritis. However, results of later conversion to total knee replacement may be compromised by periprosthetic bone loss. Previous clinical studies have demonstrated a decrease in distal femoral bone mineral density after patellofemoral joint replacement. It is unclear whether this is due to periprosthetic stress shielding. The main objective of the current study was to evaluate the stress shielding effect of prosthetic replacement with 2 different patellofemoral prosthetic designs and with a total knee prosthesis.Methods: We developed a finite element model of an intact patellofemoral joint, and finite element models of patellofemoral joint replacement with a Journey PFJ prosthesis, a Richards II prosthesis, and a Genesis II total knee prosthesis. For each of these 4 finite element models, the average Von Mises stress in 2 clinically relevant regions of interest were evaluated during a simulated squatting movement until 120 degrees of flexion.Results: During deep knee flexion, in the anterior region of interest, the average Von Mises stress with the JourneyPFJ design was comparable to the physiological knee, while reduced by almost 25% for both the Richards II design and the Genesis II total knee joint replacement design. The average Von Mises stress in the supracondylar region ofinterest was similar for both patellofemoral prosthetic designs and the physiological model, with slightly lowerstress for the Genesis II design.Conclusions: Patellofemoral joint replacement results in periprosthetic stress-shielding, although to a smaller degree than in total knee replacement. Specific patellofemoral prosthetic design properties may result in differences in femoral stress shielding.
机译:背景:Pat股关节置换术是孤立的pa股骨骨关节炎的一种成功的治疗选择。但是,假体周围骨丢失可能会损害后来转换为全膝关节置换的结果。先前的临床研究表明,pa股关节置换术后股骨远端股骨矿物质密度降低。目前尚不清楚这是否是由于假体周围的应力屏蔽所致。本研究的主要目的是评估2种different股假体设计和全膝关节假体置换假体的应力屏蔽效果。方法:我们建立了完整的pa股关节的有限元模型和and股的有限元模型Journey PFJ假体,Richards II假体和Genesis II全膝关节假体进行关节置换。对于这4个有限元模型中的每一个,在模拟的蹲姿运动直至屈曲120度的过程中,评估了2个临床相关兴趣区域的平均冯·米塞斯应力。结果:在深屈膝运动期间,在感兴趣的前部区域,平均JourneyPFJ设计的Von Mises压力与生理膝关节相当,而Richards II设计和Genesis II全膝关节置换设计的应力降低了近25%。 em股假体设计和生理模型在感兴趣的con上区域的平均Von Mises应力相似,而Genesis II设计的应力稍低。结论:Pat股关节置换术可减轻假体周围的应力,尽管其程度小于全膝关节置换。 tell股假体的特定设计特性可能会导致股骨应力屏蔽的差异。

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