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1)  baroreflex
压力感受性反射
1.
Ginkgolide B inhibits carotid sinus baroreflex in anesthetized male rats;
银杏苦内酯B抑制麻醉大鼠颈动脉窦压力感受性反射(英文)
2.
Change in extracellular amino acids in hypothalamic paraventricular nucleus during baroreflex;
室旁核内部分氨基酸类神经递质在压力感受性反射过程中的变化
3.
Effect of microinjection of atrial natriuretic peptide into the paraventricular nucleus on baroreflex sensitivity in conscious rats;
清醒大鼠室旁核微量注射心房钠尿肽对压力感受性反射敏感性的影响
2)  baroreceptor reflex
压力感受性反射
1.
Objective: The present study was designed to investigate the effect of microinfusion angiotensin Ⅱ(Ang Ⅱ),Ang Ⅱ type 1(AT_1)receptor antagonist losartan into the rostral ventrolateral medulla(RVLM)on the baroreceptor reflex sensitivity(BRS)in urethane-anesthetized rats.
目的 :探讨延髓头端腹外侧部 (RVLM )血管紧张素Ⅱ和血管紧张素Ⅰ型 (AT1 )受体阻断剂losartan对大鼠压力感受性反射敏感性的影响。
3)  Arterial baroreflex
动脉压力感受性反射
1.
Effects of different baro denervations on arterial baroreflex function in conscious rats;
三种去神经法对清醒大鼠动脉压力感受性反射功能的影响
2.
Objective:To investigate the arterial baroreflex (ABR)-associated mechanism of losartan in protection of acute cerebral ischemia injury in spontaneously hypertensive rats (SHRs).
目的:探讨氯沙坦(losartan)对自发性高血压大鼠(spontaneously hypertensiverat,SHR)急性脑梗死保护作用的动脉压力感受性反射(arterial baroreflex,ABR)机制。
4)  arterial baroreceptor reflex
动脉压力感受性反射
1.
Our previous data demonstrate that impairment of arterial baroreceptor reflex (ABR) plays an independent role in hypertension target organ damage.
既往的研究表明 ,动脉压力感受性反射 (ABR)功能下降在高血压靶器官损伤中起独立作用。
5)  peripheral baroreflex
外周压力感受性反射
6)  baroreflex
压力感受器反射
1.
Cholecystokinin octapeptide inhibits carotid sinus baroreflex in anesthetized rats;
八肽胆囊收缩素对大鼠颈动脉窦压力感受器反射的抑制作用(英文)
2.
Phytoestrogen genistein inhibits carotid sinus baroreflex in anesthetized male rats;
植物雌激素三羟异黄酮抑制麻醉大鼠颈动脉窦压力感受器反射
3.
The effects of bradykinin (BK) on the carotid baroreflex were examined in 36 anesthetized rats with isolated carotid sinus perfusion.
在36只隔离灌流左侧颈动脉窦区的麻醉大鼠上观察了缓激肽(bradykinin,BK)对颈动脉窦压力感受器反射的影响。
补充资料:压力感受器

  
  压力感受器
  

  存在于颈动脉窦和主动脉弓血管壁外膜下的感觉神经末梢。其末端膨大呈卵圆形,按其所在部位,分别称为颈动脉窦压力感受器和主动脉弓压力感受器。对动脉血压变化具有敏感性。动脉血压愈高,压力感受器传入冲动的频率愈高。当其冲动到达心血管中枢后,一则使心迷走中枢的活动加强,再则使心交感紧张中枢和交感缩血管紧张中枢减弱。通过这些中枢的活动变化,使心脏的活动不致过强,血管外周阻力不致过高,从而保持动脉血压在较低的水平。
  
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