Feigl E O
Fed Proc. 1984 Nov;43(14):2881-3.
Active parasympathetic coronary vasodilation in excess of any changes in myocardial metabolism has been observed in a number of circumstances. Electrical stimulation of the cardiac end of the cut vagus nerve produces a cholinergic coronary vasodilation that is blocked by atropine. Activation of carotid body chemoreceptors, carotid sinus baroreceptors, or left ventricular receptors elicits reflex parasympathetic coronary vasodilation. The coronary vasodilation produced by these reflexes can be prevented by vagotomy or atropine. The relative importance of parasympathetic coronary control in relation to sympathetic and local metabolic coronary control awaits further research.
在许多情况下,已观察到活跃的副交感神经介导的冠状动脉舒张超过心肌代谢的任何变化。切断迷走神经的心端进行电刺激会产生胆碱能性冠状动脉舒张,这种舒张可被阿托品阻断。激活颈动脉体化学感受器、颈动脉窦压力感受器或左心室感受器会引发反射性副交感神经介导的冠状动脉舒张。这些反射所产生的冠状动脉舒张可通过迷走神经切断术或阿托品来预防。与交感神经和局部代谢性冠状动脉控制相比,副交感神经对冠状动脉控制的相对重要性有待进一步研究。