1) vasoconstrictor responsiveness
![点击朗读](/dictall/images/read.gif)
血管收缩反应性
1.
The aim of the present study was to investigate the effect of a short-term(3-day) simulated microgravity with and without daily dorsoventral gravitation(-Gx) for 1 h on myogenic tone and vasoconstrictor responsiveness of the middle cerebral artery and mesenteric third-order small artery in rats.
结果显示:模拟失重3天可引起大脑中动脉的肌源性紧张度以及对5-HT的收缩反应性增强,引起肠系膜三级小动脉的肌源性紧张度显著降低以及对PE的缩血管反应性减弱;每日1h的–Gx重力只能防止肠系膜三级小动脉肌源性紧张度下降及血管收缩反应性减弱,而对于大脑中动脉两种反应性的增强均无影响。
2) Allergic vascular constriction
![点击朗读](/dictall/images/read.gif)
血管变态反应性收缩
4) vessel contractility
![点击朗读](/dictall/images/read.gif)
血管收缩性
5) vasopressor reflex
![点击朗读](/dictall/images/read.gif)
血管收缩反射
6) vascular reactivity
![点击朗读](/dictall/images/read.gif)
血管反应性
1.
Changes and organ diversity of vascular reactivity following endotoxic shock in rabbits;
![点击朗读](/dictall/images/read.gif)
内毒素休克后家兔血管反应性的变化规律及器官差异
2.
Objective To observe the effect of AVP on vascular reactivity and calcium sensitivity following hemorrhagic shock and its relations to V_(1a) and V_2 receptor in rats.
目的探讨精氨酸血管加压素(AVP)在恢复失血性休克动物血管反应性和钙敏感性中的可能机制和血管加压素V1 a、V2受体对其的作用。
3.
Objective To explore the changes of vascular reactivity following endotoxic shock and its relation with hemodynamic changes.
目的了解内毒素休克后血管反应性的变化规律及其与血流动力学变化的关系。
补充资料:血管
血管
blood vessel
血液运行的管道,分动脉、静脉和毛细血管三种。动脉管壁厚,管径相对细;静脉管壁薄,管径相对粗。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条