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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Metabotropic neurotransmission and integration of sympathetic nerve activity by the rostral ventrolateral medulla in the rat.
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Metabotropic neurotransmission and integration of sympathetic nerve activity by the rostral ventrolateral medulla in the rat.

机译:代谢性神经传递和交感神经的整合由大鼠的腹侧腹侧延髓引起。

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1. Cardiovascular sympathetic nerve activity at rest is grouped into waves, or bursts, that are generally, although not exclusively, related to the heart rate and to respiration. In addition, activity is also generated in response to central commands and to environmental stimuli. 2. Responsibility for the integration of all these different elements of sympathetic activity rests with pre-motoneurons in the rostral ventrolateral medulla oblongata. These pre-motoneurons are glutamatergic and spinally projecting where they form synapses with sympathetic preganglionic neurons. 3. Pre-motoneurons also contain and presumably release, neurotransmitters other than glutamate, including amines and neuropeptides that act on metabotropic receptors with long-term effects on cell function. 4. Similarly, in the rostral ventrolateral medulla oblongata the pre-motoneurons are mainly regulated by excitatory influences from glutamate and inhibitory influences from gamma-aminobutyric acid (GABA). Major focuses of recent studies are the interactions between non-glutamatergic and GABAergic systems and reflexes that regulate the activity of the sympathetic nervous system. 5. The results indicate that neurotransmitters acting at metabotropic receptors selectively affect different reflexes in the rostral ventrolateral medulla. It is suggested that this differential activation or attenuation of reflexes by different neurotransmitters is a mechanism by which the organism can fine-tune its responses to different homeostatic requirements.
机译:1.静止时的心血管交感神经活动分为波或爆发,通常(但不仅限于)与心率和呼吸有关。另外,还响应中央命令和环境刺激而产生活动。 2.交感活动的所有这些不同要素的整合的责任在于前额神经元在延髓腹侧延髓中。这些前运动神经元是谷氨酸能的,并且是脊突投射的,它们与交感神经节前神经元形成突触。 3.前运动神经元还含有并可能释放谷氨酸以外的神经递质,包括作用于代谢型受体的长期影响细胞功能的胺和神经肽。 4.同样,在延髓腹侧延髓中,运动神经元主要受谷氨酸的兴奋作用和γ-氨基丁酸(GABA)的抑制作用调节。最近研究的主要重点是非谷氨酸能和GABA能系统之间的相互作用以及调节交感神经系统活动的反射。 5.结果表明,作用于代谢型受体的神经递质选择性影响了延髓腹侧延髓中的不同反射。建议不同的神经递质的这种差异性激活或反射减弱是一种机制,生物体可以通过该机制微调其对不同稳态要求的反应。

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