首页 | 本学科首页   官方微博 | 高级检索  
检索        

复方中药安体欣对小鼠微循环障碍的改善
引用本文:冯安吉,海春旭.复方中药安体欣对小鼠微循环障碍的改善[J].第四军医大学学报,1997,18(3):244-246.
作者姓名:冯安吉  海春旭
作者单位:第四军医大学军事卫勤统计系科技开发部
摘    要:研究安体欣对小鼠微循环障碍的改善。利用高分子右旋糖酐造成小鼠微循环障碍模型,通过微循环显微摄像技术,观察,记录,分析毛细血管口径,交叉网开放数目,血液流速及血液流态的变化。结果;腹腔注射安体欣后,毛细血管口径增大17.1%,交叉开放数目增加2.4%,血流速度平均增加3级。有605左右动物在不同程度血液流态改善,血液流态从Ⅲ或Ⅳ级跃入Ⅰ级。结论:安体欣通过改善微循环起到活血化瘀的作用。

关 键 词:安体欣  复方中药  微循环障碍

The improvement of microcirculatary disturbances treated with Chinese medicine antioxing in mice
Feng Anji,Hai Chunxu,Li Ruizhen,Gu Xiaogang,Zhang Yujin Group of Science & Technology.The improvement of microcirculatary disturbances treated with Chinese medicine antioxing in mice[J].Journal of the Fourth Military Medical University,1997,18(3):244-246.
Authors:Feng Anji  Hai Chunxu  Li Ruizhen  Gu Xiaogang  Zhang Yujin Group of Science & Technology
Institution:Feng Anji,Hai Chunxu,Li Ruizhen,Gu Xiaogang,Zhang Yujin Group of Science & Technology,Department of Military Hygienies and Statistics,Fourth Military Medical University,Xi'an 710033
Abstract:Objective: To investigate the improvement of pinna microcirculatary disturbances in mice after treatment with Antioxing. Methods: The models of pinna microcirculatary disturbances generated by high molecular weight dextran were obtained in mice. The changes of diameters of capillary vessel, speed of blood flow, capillary network intersection counts and the character of blood flow determined by photomicrography were observed, recorded and analysed. Results: After ip injection of Antioxing, the diameters of capillary vessel enlarged 17.1% ( P <0.01), the openning numbers of capillary network increased by 2.4%, the speeds of blood flow raised three grades, the blood flow character improved gradually by varying degrees in about 60% animals. Conclusion: These results indicate that the medical mechanism of Antioxing is of remoting blood circulation to disperse blood stasis by improving microcirculation in mice.
Keywords:medicine  Chinese traditional  microcirculation  mice
本文献已被 CNKI 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号