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A study of the inferior mesenteric and pelvic ganglia of guinea-pigs with intracellular electrodes

机译:带细胞内电极的豚鼠下肠系膜和盆腔神经节的研究

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摘要

1. Ganglion cells in the inferior mesenteric ganglion (IMG) and the pelvic plexus of the guinea-pig were studied using intracellular micro-electrodes.2. Ganglion cells had resting membrane potentials of 55-65 mV. Threshold for initiation of an action potential ranged from 10 to 20 mV depolarization. Action potentials often exceeded 100 mV in amplitude and were followed by an after-hyperpolarization of up to 20 mV.3. Synaptic responses were recorded from cells in the IMG in response to stimulation of the right and left hypogastric nerves, ascending mesenteric, inferior splanchnic and colonic nerves. It has been established that more than forty preganglionic fibres converge on any one cell. Preganglionic fibres to the IMG were also observed in the pelvic nerves.4. In contrast to the IMG, ganglion cells in the pelvic plexus received up to ten preganglionic fibres.5. Ganglion cells responded to supramaximal preganglionic stimulation with up to four action potentials.6. In the IMG, action potentials in response to synaptic action were followed by a prolonged period of hyperpolarization (after-hyperpolarization) and a later phase of prolonged depolarization (after-depolarization). The time course of these after potentials depended on the pattern of firing of action potentials during the period of stimulation. In the presence of dihydro-β-erythroidine, or if synaptic action was insufficient to evoke action potentials, only the after-depolarization was observed.7. Other cells were impaled whose properties differed from those described above. In one group of cells the resting membrane potentials were higher (up to 85 mV), input resistances lower and the threshold for initiation of an action potential was higher. The other group were inexcitable, had high resting membrane potentials (up to 85 mV), low input resistances and underwent a slow depolarization in response to repetitive stimulation of preganglionic fibres.8. This study indicates that marked convergence of presynaptic fibres occurs on to ganglion cells of the IMG. The ganglion cells in the pelvic plexus receive a relatively small number of fibres, many of which exert intense synaptic activity ensuring a direct connexion to the central nervous system.
机译:1.利用细胞内微电极研究了肠系膜下神经节(IMG)和豚鼠骨盆神经节中的神经节细胞。神经节细胞的静息膜电位为55-65 mV。起始动作电位的阈值范围为10到20 mV去极化。动作电位的幅度通常超过100 mV,随后发生超极化后的最高20 mV.3。记录了IMG中细胞的突触反应,以刺激左右胃下神经,肠系膜,内脏下和结肠神经。已经确定,超过四十种神经节前纤维聚集在任何一个细胞上。在骨盆神经中也观察到IMG的神经节前纤维。4。与IMG相比,骨盆神经节中的神经节细胞最多接受十根神经节前纤维。5。神经节细胞对最大神经节前刺激有反应,最多有四个动作电位。6。在IMG中,响应于突触作用的动作电位之后是延长的超极化时间段(超极化后)和后期的延长的去极化时间(去极化后)。这些后电位的时间过程取决于刺激期间动作电位的发射方式。在存在二氢-β-类胡萝卜素的情况下,或者突触作用不足以引起动作电位时,仅观察到了去极化后的现象。7。刺穿了其他性质与上述不同的电池。在一组细胞中,静息膜电位较高(高达85 mV),输入电阻较低,动作电位的起始阈值较高。另一组是兴奋的,具有较高的静息膜电位(高达85 mV),低输入电阻,并且由于重复刺激神经节前纤维而经历了缓慢的去极化。8。这项研究表明,突触前纤维的显着收敛发生在IMG的神经节细胞上。骨盆神经丛中的神经节细胞接受相对少量的纤维,其中许多纤维具有强烈的突触活性,从而确保与中枢神经系统的直接连接。

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