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Septal nuclei in the regulation of vago-sensitive neurons activity of the solitary nucleus in cats

机译:隔核在猫的孤核的迷走神经敏感神经元活动中的调节

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The descending influences of the septal nuclei (lateral nucleus--LSN and bed nucleus stria terminalis--BNST) on activity of viscero-sensory neurons of the nucleus of tractus solitarius (NTS) identified by stimulation of cervical part of the n. vagus were investigated in the cat anaesthetised by chloraloze-nembutal combination. It was found that out of 70 units recorded in the NTS area 50 were identified as those of primary and secondary input vagal neurons. Influence of single, paired and frequency stimulation on the septal structures was studied on these neurons. It was revealed that 30% (15 un) reacted by phase-specific response to the single stimulation of the septal nuclei. The latent period of initial excitation was in the range 5-25 ms. During the paired stimulation these neurons were not able to react to the second stimulus for the equal 10-300 ms. It was revealed that 34% (17 un) of the identified vagal neurons reacted by a tonic change of their spontaneous activity. The increase of frequency stimulation to 20 Hz evoked different changes of the rhythmical activity of the vagal neurons (increase, diminishing or inhibition). The study of interaction between central and peripheral signals in the solitary neurons induced blocking influence of descending septal discharge on the vagal test response. It is possible that the septal downward impulses reach the vago-sensitive solitary neurons indirectly through other structures of the limbic brain (amygdala, hypothalamus) and participate in modulation of the spontaneous activity of these neurons.
机译:隔中核(外侧核-LSN和床底纹状体-BNST)对通过刺激n子宫颈部分而识别的孤束核(NTS)内脏感觉神经元活性的下降影响。在用氯铝磷-戊巴比妥麻醉的猫中调查迷走神经。发现在NTS区域中记录的70个单位中,有50个被识别为原发性和继发性迷走神经元。在这些神经元上研究了单次,配对和频率刺激对间隔结构的影响。结果表明,有30%(15 un)的反应是通过对间隔核的单次刺激进行阶段特异性反应。初始激发的潜伏期为5-25毫秒。在配对刺激过程中,这些神经元在10-300毫秒内无法对第二刺激做出反应。结果表明,已发现的迷走神经元中有34%(17 un)通过自发活动的强直变化发生反应。频率刺激增加到20 Hz引起迷走神经元节律活动的不同变化(增加,减少或抑制)。孤独神经元中枢和周围信号之间相互作用的研究引起隔室放电对迷走神经测试反应的阻断作用。间隔向下冲动可能通过边缘脑的其他结构(杏仁核,下丘脑)间接到达迷走神经敏感的孤立神经元,并参与这些神经元自发活动的调节。

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