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大鼠体感与压力感受性输入在臂旁-穹窿下器官神经元上的汇聚:一项电生理研究

Convergence of somatosensory and baroreceptive inputs onto parabrachio-subfornical organ neurons in the rat: an electrophysiological study.

作者信息

Han Z S, Gu G B, Sun C Q, Ju G

机构信息

Department of Neurobiology, Fourth Military Medical University, Xian, Peoples Republic of China.

出版信息

Brain Res. 1991 Dec 6;566(1-2):239-47. doi: 10.1016/0006-8993(91)91704-5.

Abstract

Electrophysiological characteristics were described for neurons of the parabrachial nucleus (PBN) which receive baroreceptive and somatosensory inputs in the rat. Following focal electrical stimulation in the ipsilateral caudal nucleus of the tractus solitarii (NTS), the firing rates of these neurons were increased in 94 (55.6%), and decreased in 38 (22.5%). Fifty-three (54.5%) of 97 PBN neurons tested were excited, and 11 (11.3%) inhibited in response to contralateral common peroneal nerve (CPN) stimulation. Of these neurons, 52 were found to respond to both caudal NTS and CPN stimulation. Effects of subfornical organ (SFO) stimulation were also examined in 151 of 169 parabrachial neurons. 13 (7.7%) were activated antidromically and were located in the lateral division of the PBN, while 34 (22.5%) were affected orthodromically. Stimulation of the caudal NTS resulted in both a fall in the heart rate and changes of PBN neuronal firing rates. Similar effects were elicited by activating peripheral baroreceptors by the administration of phenylephrine, an alpha-adrenergic agonist. These results strongly indicate that: (1) the lateral PBN is involved in central cardiovascular control; (2) somatosensory and baroreceptive messages may converge onto some PBN neurons; and (3) some PBN neurons may relay baroreceptive information from the caudal NTS to the SFO.

摘要

描述了大鼠臂旁核(PBN)中接受压力感受性和躯体感觉输入的神经元的电生理特征。在同侧孤束核尾侧亚核(NTS)进行局部电刺激后,这些神经元的放电频率在94个(55.6%)中增加,在38个(22.5%)中降低。在97个被测试的PBN神经元中,53个(54.5%)在对侧腓总神经(CPN)刺激时兴奋,11个(11.3%)被抑制。在这些神经元中,发现52个对尾侧NTS和CPN刺激均有反应。还在169个臂旁神经元中的151个中检测了穹窿下器官(SFO)刺激的效应。13个(7.7%)被逆向激活,位于PBN的外侧部,而34个(22.5%)受到顺向影响。尾侧NTS刺激导致心率下降和PBN神经元放电频率改变。通过给予α-肾上腺素能激动剂去氧肾上腺素激活外周压力感受器也引发了类似的效应。这些结果有力地表明:(1)外侧PBN参与中枢心血管控制;(2)躯体感觉和压力感受性信息可能汇聚到一些PBN神经元上;(3)一些PBN神经元可能将来自尾侧NTS的压力感受性信息传递到SFO。

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