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计算流体动力学溶血预测模型综述

A Review of Hemolysis Prediction Models for Computational Fluid Dynamics.

作者信息

Yu Hai, Engel Sebastian, Janiga Gábor, Thévenin Dominique

机构信息

Laboratory of Fluid Dynamics & Technical Flows, Institute of Fluid Dynamics and Thermodynamics, Otto-von-Guericke University Magdeburg, Magdeburg, Germany.

出版信息

Artif Organs. 2017 Jul;41(7):603-621. doi: 10.1111/aor.12871. Epub 2017 Jun 23.

DOI:10.1111/aor.12871
PMID:28643335
Abstract

Flow-induced hemolysis is a crucial issue for many biomedical applications; in particular, it is an essential issue for the development of blood-transporting devices such as left ventricular assist devices, and other types of blood pumps. In order to estimate red blood cell (RBC) damage in blood flows, many models have been proposed in the past. Most models have been validated by their respective authors. However, the accuracy and the validity range of these models remains unclear. In this work, the most established hemolysis models compatible with computational fluid dynamics of full-scale devices are described and assessed by comparing two selected reference experiments: a simple rheometric flow and a more complex hemodialytic flow through a needle. The quantitative comparisons show very large deviations concerning hemolysis predictions, depending on the model and model parameter. In light of the current results, two simple power-law models deliver the best compromise between computational efficiency and obtained accuracy. Finally, hemolysis has been computed in an axial blood pump. The reconstructed geometry of a HeartMate II shows that hemolysis occurs mainly at the tip and leading edge of the rotor blades, as well as at the leading edge of the diffusor vanes.

摘要

流动诱导的溶血是许多生物医学应用中的关键问题;特别是,它是诸如左心室辅助装置等血液输送装置以及其他类型血泵开发中的一个重要问题。为了估计血流中红细胞(RBC)的损伤,过去已经提出了许多模型。大多数模型已由其各自的作者进行了验证。然而,这些模型的准确性和有效范围仍不清楚。在这项工作中,通过比较两个选定的参考实验:简单的流变流动和通过针头的更复杂的血液透析流动,对与全尺寸装置的计算流体动力学兼容的最成熟的溶血模型进行了描述和评估。定量比较表明,根据模型和模型参数的不同,溶血预测存在非常大的偏差。根据当前结果,两个简单的幂律模型在计算效率和获得的准确性之间实现了最佳折衷。最后,在轴流血泵中计算了溶血情况。HeartMate II的重建几何形状表明,溶血主要发生在转子叶片的尖端和前缘以及扩散器叶片的前缘。

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