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Flow diverter modeled as heterogeneous and anisotropic porous medium: Simulation, experimental validation and case analysis

机译:流动转向器以异质和各向异性多孔介质为模型:模拟,实验验证和案例分析

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摘要

Simulation of flow diverter (FD) treated aneurysm can evaluate treatment efficacy and aid treatment planning. However, explicit modeling of thin wires of FD impose extremely high demand of computa-tional resources and time, which limit its use in time-sensitive presurgical planning. One alternative approach is to model FD as homogenous porous medium, which saves time but with compromise in accu-racy. We proposed a new method to model FD as heterogeneous and anisotropic porous medium whose properties were determined from local porosity. The new method was validated by comparing with PIV measurement from an in-vitro phantom. Simulation result was in good agreement with experimental measurement. Four patient cases were further analyzed to compare the new method with the homoge-nous porous media method. Results showed that in patient cases with curved artery, new method was preferred over the homogenous method, as the assumption of homogenous porosity led to overpredicted flow reduction effect by as much as 87.9%, which may lead to overoptimistic decision making and poor prognosis. Our new method can provide timely and accurate simulation to aid in the treatment planning of aneurysms.
机译:模拟分流器(FD)治疗动脉瘤可以评估治疗效果并帮助制定治疗计划。然而,FD细线的显式建模对计算资源和时间的要求极高,这限制了其在时间敏感的术前规划中的应用。另一种方法是将FD建模为均质多孔介质,这既节省了时间,又降低了精度。我们提出了一种新的方法,将FD建模为非均质各向异性多孔介质,其性质由局部孔隙度决定。通过与体外模型的PIV测量结果进行比较,验证了新方法的有效性。仿真结果与实验测量结果吻合较好。对4例患者进行进一步分析,将新方法与均质多孔介质法进行比较。结果表明,在动脉弯曲的患者中,新方法优于同质方法,因为同质孔隙度的假设导致对流量减少效应的预测过高,高达87.9%,这可能导致决策过于乐观,预后不良。我们的新方法可以为动脉瘤的治疗计划提供及时准确的模拟。

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