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Applicability of simplified computational models in prediction of peak wall stress in abdominal aortic aneurysms

机译:简化计算模型在腹主动脉瘤峰壁应力预测中的适用性

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In the paper impact of different material models on the calculated peak wall stress (PWS) and peak wall rupture risk (PWRR) in abdominal aortic aneurysms (AAAs) is assessed. Computational finite element models of 70 patient-specific AAAs were created using two different material models - a realistic one based on mean population results of uniaxial tests of AAA wall considered as reference, and a 100 times stiffer artificial model. The calculated results of PWS and PWRR were tested to evaluate statistical significance of differences caused by the non-realistic material model. It was shown that for majority of AAAs the differences are insignificant but for some 10% of them their relative differences exceed 20% which may lead to incorrect decisions on their surgical treatment. This percentage of failures favours application of realistic material models in clinical practise although they are much more time-consuming.
机译:在评估不同材料模型对计算峰壁应力(PWS)和峰壁破裂风险(PWRR)的纸质模型进行评估(AAAS)。 使用两种不同的材料模型创建了70名患者特异性AAA的计算有限元模型 - 一种基于视级群体的平均群体结果的逼真α,墙壁是参考的AAA壁的平均值,以及一种富有的人工模型。 测试了PWS和PWRR的计算结果,以评估由非现实材料模型引起的差异的统计学意义。 结果表明,对于大多数AAA来说,差异是微不足道的,但其中10%的10%它们的相对差异超过20%,这可能导致他们的手术治疗的决定不正确。 这种失败的百分比赞同在临床实践中应用现实材料模型,尽管它们更耗时。

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