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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Multi-source inputs converge on the superior salivatory nucleus neurons in anaesthetized rats.
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Multi-source inputs converge on the superior salivatory nucleus neurons in anaesthetized rats.

机译:多源输入汇聚在麻醉大鼠的唾液上核神经元上。

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摘要

Activation of parasympathetic nerves innervating salivary glands evokes not only salivation but also vascular responses. These parasympathetic nerves may have cardiac and/or respiratory-related activity as well as the cardiovascular sympathetic nerves that control vascular bed of salivary glands. Therefore, we investigated whether preganglionic superior salivatory nucleus (SSN) neurons projecting to the submandibular and intra-lingual ganglia exhibit pulse-related and/or respiratory-related activity, and whether they can be excited by electrical stimulation of the lingual nerve. 25% of SSN neurons were found to have pulse-related and tracheal pressure-related activities, implying that they receive cardiac and respiratory inputs. 44% of neurons exhibited only pulse-related activity, whereas 31% of the neurons had neither pulse-related nor tracheal pressure-related activity. Neurons with pulse and tracheal pressure-related activities, and those only with pulse-related activity, had B and C fibre range axons. 53% of SSN neurons received both cardiac and lingual nerve inputs. 16% of neurons recorded were found to receive only cardiac inputs, and 26% only lingual nerve inputs; whereas 5% received neither cardiac nor lingual nerve inputs. We conclude that the inputs from diverse sources converge on the SSN neurons, and they can cooperate to modulate SSN neuronal activity.
机译:支配唾液腺的副交感神经的激活不仅引起唾液分泌,还引起血管反应。这些副交感神经可能具有与心脏和/或呼吸有关的活动,以及控制唾液腺血管床的心血管交感神经。因此,我们调查了投射到下颌下和舌内神经节的神经节前上唾液核(SSN)神经元是否表现出与脉冲有关和/或与呼吸有关的活动,以及是否可以通过电刺激舌神经来激发它们。发现25%的SSN神经元具有与脉冲有关和与气管压力有关的活动,这意味着它们接受心脏和呼吸输入。 44%的神经元仅表现出与脉冲相关的活动,而31%的神经元既没有与脉冲相关的活动,也没有与气管压力相关的活动。具有脉搏和气管压力相关活动的神经元,以及仅具有脉搏相关活动的神经元具有B和C纤维范围轴突。 53%的SSN神经元同时接受了心脏和舌神经输入。发现记录的16%的神经元仅接受心脏输入,而26%的仅舌神经输入。而5%的人既没有接受心脏的输入也没有接受舌神经的输入。我们得出的结论是,来自各种来源的输入汇聚在SSN神经元上,它们可以协同调节SSN神经元的活动。

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