首页> 外文期刊>Journal of Biomechanical Science and Engineering >Simulation Study on Effects of Hematocrit on Blood Flow Properties Using Particle Method
【24h】

Simulation Study on Effects of Hematocrit on Blood Flow Properties Using Particle Method

机译:用粒子法模拟血细胞比容对血流特性的影响

获取原文
           

摘要

References(17) Cited-By(33) The effects of hematocrit (Hct) on blood flow in microcirculation were investigated by computer simulation using a particle method. Deformable red blood cells (RBCs) and blood plasma were modeled by assembly of discrete particles. It was assumed that an RBC consisted of an elastic membrane and inner viscous fluid, and that plasma was viscous fluid. The particles for the RBC membrane were connected with their neighboring membrane particles by stretch/compression and bending springs. The motion of all the particles that was subjected to incompressible viscous flow was solved by the moving particle semi-implicit (MPS) method based on Navier-Stokes (NS) equations. The forces induced by the springs to express the elastic RBC membrane were substituted into the NS equations as the external force, which enabled coupled analysis of elastic RBC motion and plasma fluid flow. Two-dimensional simulations of blood flow between parallel plates were carried out for various Hct values. As a result, it was shown that at higher Hct, RBCs were less deformed into a parachute shape during their downstream motion, indicating that mechanical interaction between RBCs restricted the RBC deformation. Mechanical interaction between RBCs had a significant influence on RBC deformation and the velocity profile of plasma flow when the Hct value was more than 0.20∼0.30. Apparent blood flow resistance increased with Hct, corresponding to previously reported in vitro experimental results compiled to an empirical formula.
机译:参考文献(17)By。(33)使用颗粒法通过计算机模拟研究了血细胞比容(Hct)对微循环中血流的影响。通过组装离散颗粒对可变形红细胞(RBC)和血浆进行建模。假定RBC由弹性膜和内部粘性流体组成,血浆是粘性流体。用于RBC膜的颗粒通过拉伸/压缩和弯曲弹簧与其相邻的膜颗粒连接。通过基于Navier-Stokes(NS)方程的运动粒子半隐式(MPS)方法,解决了所有不可压缩粘性流的运动。弹簧产生的表达弹性RBC膜的力被作为外力代入NS方程,从而可以对弹性RBC运动和血浆流体流动进行耦合分析。对于不同的Hct值,对平行板之间的血流进行了二维模拟。结果表明,在较高的Hct下,RBC在其下游运动过程中较少变形为降落伞形状,表明RBC之间的机械相互作用限制了RBC变形。当Hct值大于0.20〜0.30时,RBC之间的机械相互作用对RBC变形和等离子流速度分布有显着影响。表观血流阻力随Hct的增加而增加,与先前报道的根据经验公式汇编的体外实验结果相对应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号