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在脑干防御中枢受到刺激时压力感受器反射的抑制。

Inhibition of the baroreceptor reflex on stimulation in the brain stem defence centre.

作者信息

Coote J H, Hilton S M, Perez-Gonzalez J F

出版信息

J Physiol. 1979 Mar;288:549-60.

Abstract
  1. In anaesthetized cats, the pattern of cardiovascular response characteristic of the defence reaction has been elicited by localized electrical stimulation within the appropriate region of the hypothalamus. The baroreceptor reflex response has been elicited by raising the pressure in a blind sac preparation of the carotid sinus or by electrical stimulation of the sinus nerve.2. In addition to arterial blood pressure, heart rate and regional blood flows, activity was recorded in cardiac and renal sympathetic nerves, to assess more precisely the cardiomotor and vasomotor changes during interactions between brain stem stimulation and baroreceptor activation.3. The sympatho-inhibitory and depressor effects of carotid sinus stimulation or electrical stimulation of the sinus nerve could be completely suppressed by stimulation within the hypothalamic defence area, as could the reflex bradycardia. It is concluded that this suppression is effected through the central nervous system.4. Stimulation at points in the hypothalamus close to, but outside, the defence area, and which elicited increases in arterial pressure and sympathetic activity of similar magnitude to those from the defence area itself, did not abolish the sympatho-inhibitory or depressor effects of baroreceptor activation, though the reflex bradycardia was usually inhibited. It is suggested that this less localized change results from augmentation of the central inspiratory drive which inhibits the vagal outflow to the heart.
摘要
  1. 在麻醉猫中,通过对下丘脑适当区域进行局部电刺激,引发了防御反应特有的心血管反应模式。通过升高颈动脉窦盲囊制备物中的压力或通过电刺激窦神经来引发压力感受器反射反应。

  2. 除了动脉血压、心率和局部血流外,还记录了心脏和肾交感神经的活动,以更精确地评估脑干刺激和压力感受器激活相互作用期间的心脏运动和血管运动变化。

  3. 颈动脉窦刺激或窦神经电刺激的交感抑制和降压作用,以及反射性心动过缓,都可被下丘脑防御区域内的刺激完全抑制。得出的结论是,这种抑制是通过中枢神经系统实现的。

  4. 在下丘脑靠近防御区域但在其外部的点进行刺激,引发的动脉压和交感神经活动增加幅度与防御区域本身相似,虽然通常会抑制反射性心动过缓,但并未消除压力感受器激活的交感抑制或降压作用。有人认为,这种不太局限的变化是由中枢吸气驱动增强导致的,中枢吸气驱动会抑制迷走神经向心脏的传出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c6c/1281443/3833e5c77ee6/jphysiol00752-0552-a.jpg

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