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血流中的机械性溶血:基于偏微分方程解的与用户无关的预测。

Mechanical hemolysis in blood flow: user-independent predictions with the solution of a partial differential equation.

作者信息

Lacasse David, Garon Andre, Pelletier Dominique

机构信息

Departement de Genie Mecanique, Ecole Polytechnique de Montreal, Montreal, Que., Canada.

出版信息

Comput Methods Biomech Biomed Engin. 2007 Feb;10(1):1-12. doi: 10.1080/10255840600985535.

Abstract

This paper presents for the first time numerical predictions of mechanical blood hemolysis obtained by solving a hyperbolic partial differential equation (PDE) modelling the hemolysis in a Eulerian frame of reference. This provides hemolysis predictions over the entire computational domain as an alternative to the Lagrangian approach consisting in evaluating cell hemolysis along their trajectories. The solution of a PDE over a computational domain, such as in the approach presented herein, yields a unique solution. This is a clear advantage over the Lagrangian approach, which requires the human-made choice of a limited number of trajectories for integration and inevitably results in the incomplete coverage of the computational domain. The hyperbolic hemolysis model is solved with a Discontinuous Galerkin finite element method. The solution algorithm also includes adaptive remeshing to provide high accuracy simulations. Predictions of the modified index of hemolysis (MIH) are presented for flows in dialysis cannulae and sudden contractions. MIH predictions for cannulae differ significantly from those obtained by other authors using the Lagrangian approach. The predictions for flows in sudden contractions are used, along with our own experimental measurements, to assess the value of the threshold shear stress required for hemolysis that is included in the hemolysis model.

摘要

本文首次展示了通过求解一个双曲型偏微分方程(PDE)获得的机械性血液溶血的数值预测结果,该方程在欧拉参考系中对溶血进行建模。这提供了在整个计算域上的溶血预测,作为拉格朗日方法的替代方案,拉格朗日方法是沿着细胞轨迹评估细胞溶血。在计算域上求解偏微分方程,如本文提出的方法,会产生唯一解。这相对于拉格朗日方法是一个明显的优势,拉格朗日方法需要人为选择有限数量的轨迹进行积分,不可避免地导致计算域覆盖不完整。双曲溶血模型采用间断伽辽金有限元方法求解。求解算法还包括自适应重划分网格以提供高精度模拟。给出了透析套管内流动和突然收缩情况下溶血修正指数(MIH)的预测结果。套管的MIH预测结果与其他作者使用拉格朗日方法获得的结果有显著差异。突然收缩流动的预测结果与我们自己的实验测量结果一起,用于评估溶血模型中包含的溶血所需阈值剪切应力的值。

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