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Intracellular recording from mammalian superior cervical ganglion in situ

机译:哺乳动物上颈神经节原位细胞内记录

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摘要

1. Recordings have been obtained by intracellularly placed microelectrodes from cells of the superior cervical ganglion of the rabbit. The ganglion was left in situ.2. In response to stimulation of the external carotid nerve, some cells responded with a single spike of short latency followed by a long-lasting hyperpolarization. These cells, presumably, were activated antidromically. The majority of cells, however, responded with an early spike followed by a long-lasting depolarization; superimposed on this depolarization were one or two spikes with latencies from 35 to 70 msec. Anatomical pathways responsible for this activation have been suggested.3. A variety of responses were recorded from different neurones when the preganglionic sympathetic trunk was stimulated. Many of the cells responded to maximal stimulation of the nerve with repetitive spikes. Stimuli of constant strength could elicit variable responses from a single neurone. This variability and the multiple spike response may be due to multiple pathways leading to the same cell and the possibility of the presence of internuncial neurones in the ganglion is suggested.4. Strong stimulation of the preganglionic sympathetic nerve trunk caused inhibitory effects at the ganglion cells.5. Direct stimulation of the ganglion cells through the recording microelectrode elicited only one spike even at high intensity. Thus the multiple spike response to orthodromic stimulation must have been due to a temporally dispersed afferent input.6. It is concluded that the organization of the rabbit superior cervical ganglion is more complex than has been suspected previously, and that integration as well as transmission takes place at the level of these neurones.
机译:1.通过从兔上颈神经节细胞内细胞内放置微电极获得记录。神经节留在原处2。响应于对颈外神经的刺激,一些细胞以短潜伏期的单个尖峰响应,随后出现持久的超极化。这些细胞大概被抗激活了。然而,大多数细胞的响应是早期的峰值,然后是持久的去极化。在这种去极化上叠加了一个或两个峰值,延迟从35到70毫秒。已经提出了负责这种激活的解剖途径。3。当神经节前交感神经干受到刺激时,来自不同神经元的反应多种多样。许多细胞对神经的最大刺激具有重复性尖峰。恒定强度的刺激可引起单个神经元的可变反应。这种变异性和多重尖峰反应可能是由于通向同一细胞的多种途径,提示神经节中存在神经内神经元的可能性。4。强烈刺激神经节前交感神经干对神经节细胞产生抑制作用。5。通过记录微电极对神经节细胞的直接刺激即使在高强度下也仅引起一个尖峰。因此,对矫正刺激的多次尖峰响应必须归因于时间分散的传入输入。6。结论是,兔上颈神经节的组织比以前怀疑的要复杂,并且整合和传递发生在这些神经元的水平。

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