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颈动脉和主动脉压力感受器对视上核神经分泌神经元的影响。

Influence of carotid and aortic baroreceptors on neurosecretory neurons in supraoptic nuclei.

作者信息

Yamashita H, Koizumi K

出版信息

Brain Res. 1979 Jul 13;170(2):259-77. doi: 10.1016/0006-8993(79)90106-9.

Abstract

(1) The effects of arterial baroreceptor stimulation on the activity of 'identified' neurosecretory cells in supraoptic nuclei (SON) of the hypothalamus were investigated in anesthetized cats. (2) Stimulation of baroreceptors by distension of an 'isolated' carotid sinus greatly inhibited SON activity. A linear relationship was found to exist between stimulus intensity (an increase in the sinus pressure) and the degree of inhibition of SON neuron activity. This inhibitory effect was abolished by section of the sinus nerve. (3) The inhibitory effect of baroreceptors on SON neuron activity was most pronounced in the first 5 sec during stimulation, and the effect became less when the stimulus lasted for a long period. At the end of stimulation there was a transient reversal of the response. (4) The excitation of aortic baroreceptors by occluding descending aorta strongly inhibited SON neuron activity. (5) Occlusion of carotid arteries augmented the SON neuron activity. Electrical stimulation of the sinus nerve caused an excitation or an inhibition of SON neurons, depending on the stimulus intensities. Apparently these stimuli produced different degrees of excitation in baro- and chemoreceptors. (6) Combination of chemo- and baroreceptor stimulations revealed that the excitatory effect exerted by chemoreceptor stimulation on SON neurons was reversed or blocked by baroreceptor activation, indicating the powerful inhibitory influence of baroreceptors.

摘要

(1) 在麻醉猫身上研究了动脉压力感受器刺激对下丘脑视上核(SON)中“已鉴定”神经分泌细胞活动的影响。(2) 通过扩张“孤立”的颈动脉窦刺激压力感受器可极大地抑制SON活动。发现刺激强度(窦压力增加)与SON神经元活动的抑制程度之间存在线性关系。切断窦神经可消除这种抑制作用。(3) 压力感受器对SON神经元活动的抑制作用在刺激开始的前5秒最为明显,当刺激持续较长时间时,这种作用会减弱。在刺激结束时,反应会出现短暂的逆转。(4) 通过阻断降主动脉刺激主动脉压力感受器可强烈抑制SON神经元活动。(5) 阻断颈动脉可增强SON神经元活动。电刺激窦神经会根据刺激强度引起SON神经元的兴奋或抑制。显然,这些刺激在压力感受器和化学感受器中产生了不同程度的兴奋。(6) 化学感受器和压力感受器刺激的联合显示,化学感受器刺激对SON神经元施加的兴奋作用会被压力感受器激活所逆转或阻断,表明压力感受器具有强大的抑制作用。

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