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脑缺血及再灌注对血液粘度与红细胞变形性的影响
引用本文:丁库克  曾衍钧  廖东华,胡金麟  宋欣.脑缺血及再灌注对血液粘度与红细胞变形性的影响[J].首都医学院学报,2001,22(1):6-9.
作者姓名:丁库克  曾衍钧  廖东华  胡金麟  宋欣
作者单位:丁库克(首都医科大学研究生部)       曾衍钧(首都医科大学研究生部)       廖东华(首都医科大学研究生部)       胡金麟(首都医科大学研究生部)       宋欣(首都医科大学研究生部)
基金项目:国家自然科学基金资助项目(339600 040);总后“九五”医疗卫生科研基金资助项目;北京市自然科学基金资助项目(3982005)
摘    要:利用大鼠脑缺血及再灌注模型 ,探讨血液粘度、红细胞变形性指标 (DI)在脑缺血及再灌注情况下的变化。实验表明 :在缺血过程中 ,主要由于RBC的代偿作用 ,全血粘度减低 ,RBC变形性增强 ;在再灌注过程中 ,全血与血浆的粘度都升高 ,到再灌注 1 2h发现有恢复正常的趋势 ;说明在缺血、缺氧情况下 ,三磷腺苷减少及一些化学因子的释放促使了这种改变 ,长时间的再灌注会起到修复作用。随着切变率的增加 ,同组实验组中DI的测量值均呈指数函数递增 ,对此建立该模型下的数学方程 :φ =a +b×e-c(x-x0 ) ] ;同时对同一切变率不同实验组的RBC变形性也做了研究 ,发现DI变化不仅与缺氧及代谢性酸中毒有关 ,而且与RBC自身的特性有关。

关 键 词:缺血及再灌注  血液流变学  红细胞变形性  血液粘度  切变率
收稿时间:1999-12-18
修稿时间:1999年12月18

Effect of Cerebral Post-ischemia Reperfus ion on Blood Viscosity and Erythrocyte Deformation
Ding Kuke,Zeng Yanjun,Liao Donghua,Hu Jinlin,Song Xin.Effect of Cerebral Post-ischemia Reperfus ion on Blood Viscosity and Erythrocyte Deformation[J].Journal of Capital University of Medical Sciences,2001,22(1):6-9.
Authors:Ding Kuke  Zeng Yanjun  Liao Donghua  Hu Jinlin  Song Xin
Institution:1. Postgraduate Office, Capital University of Medical Sciences;2. Biomedical Engineering Center, Beijing Polytechnic University;3. General Hospital of PLA
Abstract:The rat model of cerebral post-ischemia reperfusion was employed in the experiment to explore whether the values of indicator of blood viscosity and erythrocyte deformation had significant difference between the experimental groups and the control group. It was found that the blood viscosity declined during ischemia, mainly because of the compensation of RBC. During reperfusion viscosity of both blood and serum increased, but there was a tendency for viscosity to return to the normal level at the point of 12 h after onset of reperfusion. These results indicate that the reduction of ATP and the release of some chemical factors during ischemia induced the change. Long time reperfusion can compensate for it. With the increase of shear rate, the erythrocyte deformation increased exponentially and the math equation of this model was set up at the same shear rate: φ= a+b×e-c(x-x0)]. It was found that erythrocyte deformation varied greatly. This is not only related to its ischemia and acidosis, but the biological character of RBC is involved.
Keywords:post  ischmia reperfusion  hemorheology  RBC deformation  blood viscosity  shear rate
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