首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Barosensitive neurons in the rat tractus solitarius and paratrigeminal nucleus: a new model for medullary, cardiovascular reflex regulation.
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Barosensitive neurons in the rat tractus solitarius and paratrigeminal nucleus: a new model for medullary, cardiovascular reflex regulation.

机译:大鼠孤束和三叉神经旁核中的压敏神经元:髓样,心血管反射调节的新模型。

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The nucleus of the solitary tract (NTS), a termination site for primary afferent fibers from baroreceptors and other peripheral cardiovascular receptors, contains blood pressure-sensitive neurons, some of which have rhythmic activity locked to the cardiac cycle, making them key components of the central pathway for cardiovascular regulation. The paratrigeminal nucleus (Pa5), a small collection of medullary neurons in the dorsal lateral spinal trigeminal tract, like the NTS, receives primary somatosensory inputs of glossopharyngeal, vagal, and other nerves. Recent studies show that the Pa5 has efferent connections to the rostroventrolateral reticular nucleus (RVL), NTS, and ambiguus nucleus, suggesting that its structure may play a role in the baroreceptor reflex modulation. In the present study, simultaneous recording from multiple single neurons in freely behaving rats challenged with i.v. phenylephrine administration, showed that 83% of NTS units and 72% of Pa5 units were baroreceptor sensitive. Whereas most of the baroreceptor-sensitive NTS and Pa5 neurons (86 and 61%, respectively) increased firing rate during the ascending phase of the pressor response, about 16% of Pa5 and NTS baroreceptor-sensitive neurons had a decreased firing rate. On one hand, the decrease in firing rate occurred during the ascending phase of the pressor response, indicating sensitivity to rapid changes in arterial pressure. On the other hand, the increases in neuron activity in the Pa5 or NTS occurred during the entire pressor response to phenylephrine. Cross-correlational analysis showed that 71% of Pa5 and 93% of NTS baroreceptor-activated neurons possessed phasic discharge patterns locked to the cardiac cycle. These findings suggest that the Pa5, like the NTS, acts as a terminal for primary afferents in the medullary-baroreflex or cardiorespiratory-reflex pathways.
机译:孤立道(NTS)的核是压力感受器和其他周围心血管受体的初级传入纤维的终止位点,包含对血压敏感的神经元,其中一些神经节律性活动被锁定在心动周期上,使其成为心律失常的关键组成部分。心血管调节的主要途径。三叉神经旁核(Pa5)是脊椎三叉神经背侧束中的一小部分髓神经元,如NTS,主要接受舌咽,迷走神经和其他神经的体感输入。最近的研究表明,Pa5与rostroventrolateral网状核(RVL),NTS和歧义核有传出连接,表明其结构可能在压力感受器反射调节中起作用。在目前的研究中,同时记录来自被i.v.攻击的自由行为大鼠的多个单个神经元。苯肾上腺素的给药表明83%的NTS单位和72%的Pa5单位对压力感受器敏感。绝大部分压力感受器敏感的NTS和Pa5神经元(分别为86%和61%)在升压反应的上升阶段提高放电率,而大约16%的Pa5和NTS压力感受器敏感神经元的放电率降低。一方面,放电率的下降发生在升压反应的上升阶段,表明对动脉压的快速变化敏感。另一方面,Pa5或NTS中神经元活性的增加发生在对苯肾上腺素的整个升压反应过程中。互相关分析显示,有71%的Pa5和93%的NTS压力感受器激活的神经元具有锁定于心动周期的相位放电模式。这些发现表明,Pa5与NTS一样,在髓质压力反射或心肺反射通路中充当初级传入传入的末端。

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