期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
慢性肾炎肾阴虚证患者血红细胞变形能力改变的临床观察 被引量:3
1
作者 严惠芳 马居里 +4 位作者 杨徐杭 魏敏惠 韩丽萍 郭小青 郭金瑞 《陕西中医》 北大核心 2005年第4期317-318,共2页
目的 :探讨慢性肾炎肾阴虚证患者与血红细胞变形能力改变之间的相关性 ,方法 :采用激光衍射的方法研究了慢性肾炎肾虚证患者与血红细胞变形能力改变之间的相关性 ,并设对照组对照。结果 :慢性肾炎肾阴虚与肾阳虚两组血红细胞变形能力均... 目的 :探讨慢性肾炎肾阴虚证患者与血红细胞变形能力改变之间的相关性 ,方法 :采用激光衍射的方法研究了慢性肾炎肾虚证患者与血红细胞变形能力改变之间的相关性 ,并设对照组对照。结果 :慢性肾炎肾阴虚与肾阳虚两组血红细胞变形能力均低于正常人 (均 P<0 .0 1 ) ;肾阴虚证与肾阳虚证两组间比较 ,肾阴虚证偏低 ( P<0 .0 1 )。提示 展开更多
关键词 慢性肾炎 肾阴虚证 血红细胞变形能力 临床观察 中医病因
下载PDF
Mechanical behavior of pathological and normal red blood cells in microvascular flow based on modified level-set method
2
作者 XiWen Zhang FangChao Ma +1 位作者 PengFei Hao ZhaoHui Yao 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第1期66-74,共9页
The research of the motion and deformation of the RBCs is important to reveal the mechanism of blood diseases. A numerical method has been developed with level set formulation for elastic membrane immersed in incompre... The research of the motion and deformation of the RBCs is important to reveal the mechanism of blood diseases. A numerical method has been developed with level set formulation for elastic membrane immersed in incompressible fluid. The numerical model satisfies mass and energy conservation without the leaking problems in classical Immersed Boundary Method(IBM), at the same time, computing grid we used can be much smaller than the general literatures. The motion and deformation of a red blood cell(including pathological & normal status) in microvascular flow are simulated. It is found that the Reynolds number and membrane's stiffness play an important role in the transmutation and oscillation of the elastic membrane. The normal biconcave shape of the RBC is propitious to create high deformation than other pathological shapes. With reduced viscosity of the interior fluid both the velocity of the blood and the deformability of the cell reduced. With increased viscosity of the plasma both the velocity of the blood and the deformability of the cell reduced. The tank treading of the RBC membrane is observed at low enough viscosity contrast in shear flow. The tank tread fixed inclination angle of the cell depends on the shear ratio and viscosity contrast, which can be compared with the experimental observation well. 展开更多
关键词 red blood cell microvascular flow shear flow fluid-structure interaction level set
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部