Song Xinwei, Throckmorton Amy L, Wood Houston G, Antaki James F, Olsen Don B
Mechanical and Aerospace Engineering Department, Virginia Artificial Heart Institute, University of Virginia, Charlottesville, VA 22903, USA.
Artif Organs. 2003 Oct;27(10):938-41. doi: 10.1046/j.1525-1594.2003.00026.x.
This study explores a quantitative evaluation of blood damage that occurs in a continuous flow left ventricular assist device due to fluid stress. Computational fluid dynamics (CFD) analysis is used to track the shear stress history of 388 particle streaklines. The accumulation of shear and exposure time is integrated along the streaklines to evaluate the levels of blood trauma. This analysis, which includes viscous and turbulent stresses, provides a statistical estimate of possible damage to cells flowing through the pump. In vitro normalized index of hemolysis values for clinically available ventricular assist devices were compared to our damage indices. This allowed for an order of magnitude comparison between our estimations and experimentally measured hemolysis levels, which resulted in a reasonable correlation. This work ultimately demonstrates that CFD is a convenient and effective approach to analyze the Lagranian behavior of blood in a heart assist device.
本研究探讨了连续流左心室辅助装置中由于流体应力导致的血液损伤的定量评估。采用计算流体动力学(CFD)分析来追踪388条粒子迹线的剪应力历史。沿着迹线对剪应力和暴露时间的累积进行积分,以评估血液创伤水平。该分析包括粘性应力和湍流应力,提供了对流经泵的细胞可能损伤的统计估计。将临床可用心室辅助装置的体外溶血值标准化指数与我们的损伤指数进行了比较。这使得我们能够对估计值和实验测量的溶血水平进行量级比较,结果显示出合理的相关性。这项工作最终证明,CFD是分析心脏辅助装置中血液拉格朗日行为的一种便捷有效的方法。