Yang Z, Coote J H
Department of Physiology, The Medical School, The University of Birmingham, Birmingham B15 2TT.
Pflugers Arch. 1999 Jun;438(1):47-52. doi: 10.1007/s004240050878.
The question of whether neurones in the paraventricular nucleus (PVN) of the hypothalamus have an influence on barosensitive vasomotor neurones of the caudal ventrolateral medulla (CVL) was addressed in this study using anaesthetised rats. Extracellular microelectrode recordings were made from 27 vasomotor neurones in the CVL, identified by their cardiac cycle-related probability of discharge, by the increase in activity in response to an increase in arterial blood pressure produced by i.v. phenylephrine and by the decrease in activity in response to a decrease in blood pressure produced by i.v. nitroprusside. Activation of neurones at different sites in the PVN with a microinjection of d,l-homocysteic acid (DLH) activated 12 CVL neurones and inhibited 6 CVL neurones. In four CVL units single-shock electrical stimulation at a PVN pressor site, first identified with DLH, elicited a synaptic action potential with a latency of 29+/-0.3 ms. It is concluded that PVN neurones can influence the CVL vasomotor neurones directly. This could be one means by which PVN-depressor and sympatho-inhibitory effects are produced.
本研究使用麻醉大鼠探讨了下丘脑室旁核(PVN)中的神经元是否对延髓尾端腹外侧(CVL)的压力感受性血管运动神经元有影响。通过细胞外微电极记录了CVL中的27个血管运动神经元,这些神经元通过其与心动周期相关的放电概率、静脉注射去氧肾上腺素导致动脉血压升高时活动增加以及静脉注射硝普钠导致血压降低时活动减少来识别。通过微量注射d,l-高半胱氨酸(DLH)激活PVN不同部位的神经元,激活了12个CVL神经元并抑制了6个CVL神经元。在四个CVL单位中,在首先用DLH确定的PVN升压部位进行单脉冲电刺激,引发了潜伏期为29±0.3毫秒的突触动作电位。得出的结论是,PVN神经元可直接影响CVL血管运动神经元。这可能是产生PVN降压和交感抑制作用的一种方式。