University of Manitoba, Winnipeg, MB, Canada; Concordia Joint Replacement Group, Winnipeg, MB, Canada.
Concordia Joint Replacement Group, Winnipeg, MB, Canada; Orthopaedic Innovation Centre, Winnipeg, MB, Canada.
J Biomech. 2014 Mar 21;47(5):1127-33. doi: 10.1016/j.jbiomech.2013.12.017. Epub 2014 Jan 15.
The cost and time efficiency of computational polyethylene wear simulations may enable the optimization of total knee replacements for the reduction of polyethylene wear. The present study proposes an energy dissipation wear model for polyethylene which considers the time dependent molecular behavior of polyethylene, aspects of tractive rolling and contact pressure. This time dependent - energy dissipation wear model was evaluated, along with several other wear models, by comparison to pin-on-disk results, knee simulator wear test results under various kinematic conditions and knee simulator wear test results that were performed following the ISO 14243-3 standard. The proposed time dependent - energy dissipation wear model resulted in improved accuracy for the prediction of pin-on-disk and knee simulator wear test results compared with several previously published wear models.
计算聚乙烯磨损模拟的成本和时间效率可能使全膝关节置换术得以优化,以减少聚乙烯磨损。本研究提出了一种考虑聚乙烯时变分子行为、牵引滚动和接触压力等方面的能量耗散磨损模型。通过与销盘试验结果、各种运动条件下膝关节模拟器磨损试验结果以及按照 ISO 14243-3 标准进行的膝关节模拟器磨损试验结果进行比较,对该时变-能量耗散磨损模型进行了评估。与几个以前发布的磨损模型相比,所提出的时变-能量耗散磨损模型在预测销盘和膝关节模拟器磨损试验结果方面具有更高的准确性。