首页> 美国卫生研究院文献>The Journal of Physiology >Regulation by patterned preganglionic neural activity of transmitter stores in a sympathetic ganglion.
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Regulation by patterned preganglionic neural activity of transmitter stores in a sympathetic ganglion.

机译:通过交感神经节中的递质存储区的模式化神经节前神经活动进行调节。

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摘要

1. The effect of patterned preganglionic stimulation on acetylcholine (ACh) stores was studied in the superior cervical ganglion of the cat. 2. Patterns of stimulation based on 0.5 and 1.0 s trains at frequencies from 10 to 80/s and intervals between trains of 2-180 s increased ACh stores, over periods of 1-3 h stimulation, to the same extent (30-70%) as found earlier to result from continuous stimulation. 3. If the mean frequency of the overall pattern was greater than 5/s the increase in stores developed after termination of the stimulation. If the mean frequency was less than 5/s the increase developed progressively during stimulation and it was then maintained without accommodation over 7 h of stimulation. 4. The magnitude of the increase in ACh stores was linearly related to the frequency within the trains from 10 to 40/s, decreasing with further increase in frequency, and absent below 6-7/s. 5. The ACh stores were increased by patterns of stimulation that mimicked discharging of preganglionic neurones driven by the central respiratory drive under hypercapnic or asphyxial stress; and were increased similarly in animals respired with hypercapnic or partially asphyxial gas mixtures when the preganglionic innervation was intact, but not when it was severed. 6. The variance between ACh stores of ganglia from different animals was reduced in animals held in a controlled environment for 1-2 weeks before experimentation. 7. It is concluded that patterning of preganglionic inputs into high frequency trains is a code for the ongoing modulation of transmitter stores in a sympathetic ganglion. 8. The findings are discussed in relation to current knowledge of ganglionic transmission and to after-hyperpolarization in mammalian unmyelinated nerve fibres.
机译:1.在猫的上颈神经节中研究了图案化的节前刺激对乙酰胆碱(ACh)存储的影响。 2.以0.5和1.0 s的火车为基础,以10至80 / s的频率刺激,火车之间间隔2-180 s的刺激模式,在1-3 h的刺激时间内增加了ACh存储,幅度相同(30-70 (%),如先前发现是由于持续刺激所致。 3.如果总体模式的平均频率大于5 / s,则刺激终止后存储增加。如果平均频率小于5 / s,则在刺激过程中逐渐增加,然后在刺激后7小时内保持不变。 4. ACh存储量的增加幅度与列车内的频率从10到40 / s呈线性关系,随着频率的进一步增加而减小,而在6-7 / s以下则不存在。 5.通过模拟在高碳酸血症或窒息胁迫下由中央呼吸驱动所驱动的神经节前神经元放电的刺激方式,增加了ACh储备;当神经节前神经完好无损时,在用高碳酸血症或部分窒息气体混合物呼吸的动物中,其增加类似,但在严重时则没有。 6.实验前将动物在控制环境中饲养1-2周,可减少来自不同动物的神经节ACh储备之间的差异。 7.结论是,神经节前神经节输入到高频序列的模式化是用于对交感神经节中的发射器存储进行持续调制的代码。 8.讨论了有关神经节传递的当前知识和哺乳动物未髓鞘神经纤维的超极化后的知识。

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