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A probabilistic approach for modelling bone fracture healing under Ilizarov circular fixator

机译:伊利尔科夫圆形固定器骨折愈合愈合的概率方法

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Bone fracture treatments using Ilizarov circular fixator (ICF) involve dealing with uncertainties about a range of critical factors that control the mechanical microenvironment of the fracture site such as ICF configuration, fracture gap size, physiological loading etc. To date, the effects of the uncertainties about these critical factors on the mechanical microenvironment of the fracture site have not been fully understood. The purpose of this study is to tackle this challenge by using computational modelling in conjunction with engineering reliability analysis. Particularly, the effects of uncertainties in fracture gap size (GS), level of weight-bearing (P), ICF wire pretension (T) and wire diameter (WD) on the fracture site mechanical microenvironment at the beginning of the reparative phase of healing was investigated in this study. The results show that the mechanical microenvironment of fracture site stabilised with ICF is very sensitive to the uncertainties in P and GS. For example, an increase in the coefficient of variation of P (COVP) from 0.1 to 0.9 (i.e., an increase in the uncertainty in P) could reduce the probability of achieving a favourable mechanical microenvironment within the fracture site (i.e., Probability of Success, PoS) by more than 50%, while an increase in the coefficient of variation of GS (COVGS) from 0.1 to 0.9 could decrease PoS by around 30%. In contrast, an increase in the uncertainties in T and WD (COV increase from 0.1 to 0.9) has little influence on the fracture site mechanical microenvironment (PoS changes 5%).
机译:使用Ilizarov圆形固定器(ICF)的骨折处理涉及处理关于诸如ICF配置,断裂隙大小,生理负荷等的骨折部位的机械微环境的一系列关键因素的不确定性,迄今为止,不确定的影响关于骨折部位的机械微环境上的这些关键因素尚未得到完全理解。本研究的目的是通过使用计算建模与工程可靠性分析结合使用计算建模来解决这一挑战。特别是,在愈合的重复阶段开始时,在骨折部位机械微环境上的骨折间隙尺寸(GS),负重(P),ICF线预宽度(T)和线径(WD)的影响的影响在这项研究中调查了。结果表明,用ICF稳定的骨折部位的机械微环境对P和GS的不确定性非常敏感。例如,P(COVP)的变化系数增加(CoVP)的增加(即,P)的不确定性的增加可以降低在骨折位点(即成功的概率)中实现有利的机械微环境的可能性,POS)超过50%,而GS(CoVG)的变化系数增加到0.1至0.9的增加可以将POS降低约30%。相反,T和WD中的不确定性的增加(COV从0.1〜0.9增加)对骨折部位机械微环境的影响几乎没有影响(POS变化& 5%)。

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