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An intracellular characterization of neurones and neural connexions within the left coeliac ganglion of cats.

机译:猫左腹神经节内神经元和神经连接的细胞内特征。

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摘要

Intracellular recordings were made in vitro from neurones located within the left coeliac ganglion of the cat solar plexus. Thirty percent of the neurones within left coeliac ganglia were identified as efferent neurones. Within this neuronal population, splenic-efferent and renal-efferent neurones were identified specifically. Neurones within left coeliac ganglia were characterized as either phasic (fast adapting) neurones or tonic (slowly adapting) neurones depending upon their prolonged firing behaviour. Electrophysiological properties of neurones varied considerably. The wide range of values obtained for both input resistance and input capacitance suggest that sizeable differences in either specific membrane resistance or cell geometry exist within the over-all neurone population. Frequency distributions of input resistance, time constant, input capacitance and current threshold for tonic and phasic neurones were found to be significantly different. Compound excitatory post-synaptic potentials were produced by stimulation of the ipsilateral splanchnic nerves in 69% of the neurones tested and in 3% of the neurones tested upon stimulation of the contralateral splanchnic nerves. Electrical stimulation of nerve fibres located in the coeliac plexus, the superior mesenteric plexus or the left renal nerves generated excitatory synaptic potentials in neurones located within left coeliac ganglia. It is concluded that neurones within the left coeliac ganglion are innervated by splanchnic nerve fibres primarily contained within the left splanchnic nerves, receive excitatory synaptic input from splenic, renal and other peripheral preganglionic fibres and have extremely varied electrophysiological properties.
机译:从位于猫太阳神经丛左腹神经节内的神经元在体外进行细胞内记录。左腹神经节内的神经元的百分之三十被确定为传出神经元。在该神经元群体中,明确鉴定出脾有效神经元和肾有效神经元。左腹神经节内的神经元根据其长期的放电行为被表征为阶段性(快速适应)神经元或强直性(缓慢适应)神经元。神经元的电生理特性差异很大。针对输入电阻和输入电容获得的值的广泛范围表明,在整个神经元群体中,特定膜电阻或细胞几何结构均存在相当大的差异。发现补品和相性神经元的输入电阻,时间常数,输入电容和电流阈值的频率分布明显不同。刺激对侧内脏神经后,通过刺激同侧内脏神经可产生复合兴奋性突触后电位,其中69%的受试神经元和3%的神经元受到刺激。位于腹腔神经丛,肠系膜上神经丛或左肾神经的神经纤维的电刺激在位于左腹神经节内的神经元中产生兴奋性突触电位。结论是,左腹神经节内的神经元受主要包含在左内脏神经内的内脏神经纤维的支配,从脾,肾和其他周围神经节前神经节纤维接受兴奋性突触输入,并且具有极为不同的电生理特性。

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