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首页> 外文期刊>Journal of Biomechanics >Numerical simulation of aneurysmal haemodynamics with calibrated porous-medium models of flow-diverting stents
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Numerical simulation of aneurysmal haemodynamics with calibrated porous-medium models of flow-diverting stents

机译:流动转移支架校准多孔介质模型动脉瘤血流动力学的数值模拟

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摘要

Modelling flow-diverting (FD) stents as porous media (PM) markedly improves the efficiency of computational fluid dynamics (CFD) simulations in the study of intracranial aneurysm treatment. Nonetheless, the parameters of PM models adopted for simulations up until now were rarely calibrated to match the represented FD structure. We therefore sought to evaluate the PM parameters for a representative variety of commercially available stents, so characterising the flow-diversion behaviours of different FD devices on the market.We generated fully-resolved geometries for treatments usingPED, Silk+,FRED, and dualPEDstents. We then correspondingly derived the calibrated PM parameters—permeability (k) and inertial resistance factor (C2)—for each stent design from CFD simulations, to ensure the calibrated PM model has identical flow resistance to the FD stent it represents. With each of the calibrated PM models respectively deployed in two aneurysms, we studied the flow-diversion effects of these stent configurations.This work for the first time reported several sets of parameters for PM models, which is vital to address the current knowledge gap and rectify the errors in PM model simulations, thereby setting right the modelling protocol for future studies using PM models. The flow resistance parameters were strongly affected by porosity and effective thickness of the commercial stents, and thus accounted for in the PM models. Flow simulations using the PM stent models revealed differences in aneurysmal mass flowrate (MFR) and energy loss (EL) between various stent designs.This study improves the practicability of FD simulation by using calibrated PM models, providing an individualised method with improved simulation efficiency and accuracy.
机译:模拟流动转移(FD)支架作为多孔介质(PM)显着提高了颅内动脉瘤治疗研究中的计算流体动力学(CFD)模拟的效率。尽管如此,仿真采用的PM模型的参数很少被校准以匹配所代表的FD结构。因此,我们寻求评估PM参数的代表各种各样的市售支架,因此表征了市场上不同FD设备的流动性行为。我们为使用的处理,丝绸+,弗雷德和双面的处理产生了完全分辨的几何形状。然后,我们相应地导出校准的PM参数 - 渗透率(K)和惯性电阻因子(C2) - 对于来自CFD模拟的每个支架设计,以确保校准的PM模型对其代表的FD支架具有相同的流动阻力。对于分别部署在两个动脉瘤中的每个校准的PM模型,我们研究了这些支架配置的流量转移效果。这是第一次上的工作报告了PM模型的几组参数,这对于解决当前知识差距至关重要纠正PM模型模拟中的错误,从而为使用PM​​型号设置对未来研究的建模协议。流动阻力参数受到商业支架的孔隙率和有效厚度的强烈影响,因此在PM模型中占用。使用PM支架模型的流量模拟显示了各种支架设计之间的动脉瘤大量流量(MFR)和能量损失(EL)的差异。本研究通过使用校准的PM模型来提高FD仿真的实用性,提供具有改进的模拟效率的个性化方法和准确性。

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