目的探讨葛根素对急性血瘀证模型大鼠血细胞聚集的改善作用。
OBJECTIVE To observe the amelioration effects of puerarin on blood cell aggregation in acute blood-stasis model rats.
目的:观察葛根素注射液对急性血瘀证模型大鼠的血液粘滞性的改善作用。
AIM: To observe the ameliorative effect of Puerarin Injection on blood hyperviscosity in acute blood-stasis model rats.
目的观察银杏黄酮、银杏黄酮磷脂复合物对急性家兔血瘀证模型血液流变学与微循环的影响。
Objective to observe the influence of the ginkgo flavone and the compounds of ginkgo flavone phospholipid to the blood rheology and microcirculation of the acute rabbit blood stasis model.
选用中老龄大鼠,采用饥饿、劳累、高脂饮食,结扎左侧颈总动脉的方法,制作缺血性中风气虚血瘀证模型。
The rat model of Qi deficiency and blood stasis in ischemia stroke was made by using middling aging rats, hunger, tiredness, high fat diets and the occlusion of left common carotid.
结果:急性血瘀证模型大鼠的全血粘度和血浆粘度均明显增高,葛根素注射液对急性血瘀证导致的全血粘度和血浆粘度的高粘滞性具有明显的降低作用。
RESULTS: The whole blood viscosity and plasm viscosity was significantly raised in the acute blood-stasis model rats and Puerarin Injection had ameliorative effects on them.
结果:急性血瘀证模型大鼠的全血粘度和血浆粘度均明显增高,葛根素注射液对急性血瘀证导致的全血粘度和血浆粘度的高粘滞性具有明显的降低作用。
RESULTS: the whole blood viscosity and plasm viscosity was significantly raised in the acute blood-stasis model rats and Puerarin Injection had ameliorative effects on them. C...
目的:研制一种较为实用的邪毒致肝血瘀阻证的动物模型。
Objective: to make a practical animal model with liver blood stasis caused by pathogenic factor.
方法:用游泳劳损法制造气虚血瘀证大鼠模型,测定血液流变学指标。
Method: The rat model of Qi-deficiency-blood-stasis syndrome was induced by strain with swimming.
结论糖尿病阴虚血瘀证大鼠模型造模成功。
Conclusion The diabetic rat model with YDBS is successfully established.
方法建立实验性血管性眩晕气虚血瘀证家兔模型,以西比灵胶囊为阳性对照药进行比较,观察眩晕定方干预前后血液流变学和脑血流图等改变情况。
Methods The vascular vertiginous model rabbits with QDBS were prepared, and compared with medicine sibelium, the effects of XYD on REG and blood rheology in these models were evaluated.
方法建立实验性血管性眩晕气虚血瘀证家兔模型,以西比灵胶囊为阳性对照药进行比较,观察眩晕定方干预前后血液流变学和脑血流图等改变情况。
Methods The vascular vertiginous model rabbits with QDBS were prepared, and compared with medicine sibelium, the effects of XYD on REG and blood rheology in these models were evaluated.
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