首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Development of robust finite element models of porcine tibiofemoral joints loaded under varied flexion angles and tibial freedoms
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Development of robust finite element models of porcine tibiofemoral joints loaded under varied flexion angles and tibial freedoms

机译:在各种屈曲角度和胫骨自由下装载的猪胫甲纤维接头稳健有限元模型

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The successful development of cartilage repair treatments for the knee requires understanding of the biomechanical environment within the joint. Computational finite element models play an important role in noninvasively understanding knee mechanics, but it is important to compare model findings to experimental data. The purpose of this study was to develop a methodology for generating subject-specific finite element models of porcine tibiofemoral joints that was robust and valid over multiple different constraint scenarios. Computational model predictions of two knees were compared to experimental studies on corresponding specimens loaded under several different constraint scenarios using a custom designed experimental rig, with variations made to the femoral flexion angle and level of tibial freedom. For both in vitro specimens, changing the femoral flexion angle had a marked effect on the contact distribution observed experimentally. With the tibia fixed, the majority of the contact region shifted to the medial plateau as flexion was increased. This did not occur when the tibia was free to displace and rotate in response to applied load. These trends in contact distribution across the medial and lateral plateaus were replicated in the computational models. In an additional model with the meniscus removed, contact pressures were elevated by a similar magnitude to the increase seen when the meniscus was removed experimentally. Overall, the models were able to capture specimen-specific trends in contact distribution under a variety of different loads, providing the potential to investigate subject-specific outcomes for knee interventions.
机译:膝关节软骨修复治疗的成功发展需要了解关节内的生物力学环境。计算有限元模型在无创性了解膝关节力学方面发挥着重要作用,但将模型结果与实验数据进行比较很重要。本研究的目的是开发一种方法,用于生成猪胫股关节的特定于受试者的有限元模型,该模型在多个不同约束场景下都是可靠和有效的。两个膝盖的计算模型预测与使用定制设计的实验装置在几种不同约束情况下加载的相应样本的实验研究进行了比较,其中股骨屈曲角度和胫骨自由度发生了变化。对于两个体外标本,改变股骨屈曲角度对实验观察到的接触分布有显著影响。胫骨固定后,随着弯曲度的增加,大部分接触区域移向内侧平台。当胫骨可以自由位移和旋转以响应施加的载荷时,不会发生这种情况。这些接触分布的趋势在计算模型中得到了复制。在另一个移除弯月面的模型中,接触压力的增加幅度与实验移除弯月面时的增加幅度相似。总的来说,这些模型能够捕捉在各种不同负荷下接触分布的样本特定趋势,为研究膝关节干预的受试者特定结果提供了可能。

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