首页> 外文期刊>BioImpacts >Numerical investigation of blood flow in a deformable coronary bifurcation and non-planar branch
【24h】

Numerical investigation of blood flow in a deformable coronary bifurcation and non-planar branch

机译:变形性冠状动脉分叉和非平面分支中血流的数值研究

获取原文
           

摘要

Introduction Among cardiovascular diseases, arterials stenosis is recognized more commonly than the others. Hemodynamic characteristics of blood play a key role in the incidence of stenosis. This paper numerically investigates the pulsatile blood flow in a coronary bifurcation with a non-planar branch. To create a more realistic analysis, the wall is assumed to be compliant. Furthermore, the flow is considered to be threedimensional, incompressible, and laminar. Methods The effects of non-Newtonian blood, compliant walls and different angles of bifurcation on hemodynamic characteristics of flow were evaluated. Shear thinning of blood was simulated with the Carreau-Yasuda model. The current research was mainly focused on the flow characteristics in bifurcations since atherosclerosis occurs mostly in bifurcations. Moreover, as the areas with low shear stresses are prone to stenosis, these areas were identified. Results Our findings indicated that the compliant model of the wall, bifurcationa??s angle, and other physical properties of flow have an impact on hemodynamics of blood flow. Lower wall shear stress was observed in the compliant wall than that in the rigid wall. The outer wall of bifurcation in all models had lower wall shear stress. In bifurcations with larger angles, wall shear stress was higher in outer walls, and lower in inner walls. Conclusion The non-Newtonian blood vessels and different angles of bifurcation on hemodynamic characteristics of flow evaluation confirmed a lower wall shear stress in the compliant wall than that in the rigid wall, while the wall shear stress was higher in outer walls but lower in inner walls in the bifurcation regions with larger angles.
机译:简介在心血管疾病中,动脉狭窄比其他疾病更为普遍。血液的血液动力学特征在狭窄的发生中起关键作用。本文对非平面分支的冠状动脉分叉处的脉动血流进行了数值研究。为了创建更现实的分析,假定墙是顺应性的。此外,该流动被认为是三维的,不可压缩的和层流的。方法评估非牛顿血液,顺应性壁和不同分叉角度对血流动力学特性的影响。用Carreau-Yasuda模型模拟血液的剪切稀化。由于动脉粥样硬化主要发生在分叉处,因此目前的研究主要集中在分叉处的流动特性上。此外,由于剪切应力低的区域易于狭窄,因此可以确定这些区域。结果我们的发现表明,壁的顺应性模型,分叉角和流动的其他物理特性对血流的血液动力学有影响。在顺应壁中观察到的壁切应力比在刚性壁中低。在所有模型中,分叉的外壁均具有较低的壁切应力。在角度较大的分叉中,外壁的剪应力较高,而内壁的剪应力较低。结论非牛顿血管和不同分叉角度对血流动力学特性的影响证实顺应壁的壁切应力低于刚性壁,而外壁的壁切应力较高而内壁的壁应力较低。在具有较大角度的分叉区域中。

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