首页> 美国卫生研究院文献>The Journal of Physiology >Hypothalamic modulation of the arterial chemoreceptor reflex in the anaesthetized cat: role of the nucleus tractus solitarii.
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Hypothalamic modulation of the arterial chemoreceptor reflex in the anaesthetized cat: role of the nucleus tractus solitarii.

机译:下丘脑调制的麻醉猫的动脉化学感受器反射:孤束核的作用。

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摘要

1. There is evidence in the literature of a mutual facilitatory interaction between the arterial chemoreceptor reflex and the alerting stage of the defence reaction, particularly in relation to the patterning of cardiorespiratory activity. The present study has been designed to test the hypothesis that a portion of this interaction involves synaptic interactions within the nucleus tractus solitarii (NTS). 2. The study has involved an analysis of the effective interactions between the stimulation of the arterial chemoreceptors and the hypothalamic defence area (HDA) on the activity of NTS neurones recorded in anaesthetized, paralysed and artificially ventilated cats. 3. A group of eighteen NTS neurones was classified as chemosensitive, on the basis of displaying EPSPs on sinus nerve stimulation (SN) and their failure to show an excitatory response to baroreceptor stimulation. Thirteen of these neurones displayed pronounced excitatory responses to chemoreceptor stimulation. In sixteen of these neurones HDA stimulation elicited an EPSP; in four of these sixteen neurones this early EPSP was followed by an IPSP. In the remaining two (of 18) neurones HDA stimulation provoked no obvious synaptic response but facilitated the efficacy of both chemoreceptor inputs and SN stimulation. 4. Neurones shown to receive convergent inputs from the arterial chemoreceptors (and SN stimulation) and HDA, often displayed excitatory responses to stimulation of other peripheral inputs. Vagally evoked EPSPs were observed in nine neurones, SLN-evoked responses in seven neurones and aortic nerve-evoked EPSPs in three neurones. 5. The organization of these synaptic interactions is discussed and these data are used to explain the pattern of interaction between chemoreceptor, baroreceptor and HDA inputs within the NTS. Conclusions are drawn regarding the functional role of different classes of NTS neurone, based on the findings in this and the accompanying two papers.
机译:1.文献中有证据表明,动脉化学感受器反射与防御反应的预警阶段之间存在相互促进的相互作用,尤其是与心肺活动模式有关的相互作用。本研究旨在测试以下假设:这种相互作用的一部分涉及孤束核(NTS)内的突触相互作用。 2.这项研究包括分析麻醉,瘫痪和人工通风的猫中记录的动脉化学感受器刺激和下丘脑防御区(HDA)对NTS神经元活性的有效相互作用。 3.根据在鼻窦神经刺激(SN)上显示EPSP及其未能表现出对压力感受器刺激的兴奋性反应,将18个NTS神经元组归类为化学敏感性。这些神经元中的13个显示出对化学感受器刺激的明显兴奋性反应。在这些神经元中的十六个中,HDA刺激引起了EPSP;在这16个神经元中的4个中,早期的EPSP之后是IPSP。在其余的(18个)神经元中,HDA刺激没有引起明显的突触反应,但促进了化学感受器输入和SN刺激的功效。 4.神经元显示从动脉化学感受器(和SN刺激)和HDA接收收敛的输入,通常显示出对其他周围输入的刺激的兴奋性反应。在9个神经元中观察到了阴道诱发的EPSP,在7个神经元中观察到了SLN诱发的反应,在三个神经元中观察到了主动脉神经诱发的EPSP。 5.讨论了这些突触相互作用的组织,这些数据用于解释NTS中化学感受器,压力感受器和HDA输入之间的相互作用模式。基于本研究以及随附的两篇论文的发现,得出了有关不同类别的NTS神经元功能作用的结论。

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