首页> 美国卫生研究院文献>The Journal of Physiology >Long term changes in augmentation potentiation and depression of transmitter release as a function of repeated synaptic activity at the frog neuromuscular junction.
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Long term changes in augmentation potentiation and depression of transmitter release as a function of repeated synaptic activity at the frog neuromuscular junction.

机译:青蛙神经肌肉连接处反复突触活动的功能递质的增强增强和抑制的长期变化。

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摘要

1. End-plate potentials (e.p.p.s) were recorded from frog neuromuscular junctions under conditions of low quantal content to study the long-term effects of repeated synaptic activity on transmitter release. 2. The nerve terminal was presented with 30-100 successive conditioning-testing trials applied once every 7-10 min over a 4-16 hr perod. Each conditioning-testing trial consisted of a 200-600 impulse conditioning train followed by a series of testing impulses. The magnitudes and time constants of decay of augmentation and potentiation following each successive conditioning train were determined by measuring the e.p.p. amplitudes resulting from the testing impulses. 3. The magnitude of augmentation immediately following the conditioning trains increased an average of 3-4 times (range 1-20) with sucessive trials. 4. As the magnitude of augmentation increased with successive trials the decay of augmentation deviated from a simple exponential, decaying faster immediately after the conditioning train. This faster decay led to a 20% decrease with successive trials in estimates of the time constant obtained from the first 10 or 20 sec of the decay of augmentation. The deviation of the decay of augmentation from a simple exponential could be accounted for if augmentation is related to the 4th power of some substance which decays with a simple exponential time course. Some alternative explantations for the non-exponential decay of augmentation are also discussed. 5. The magnitude of potentiation increased or decreased about 25% with successive trials. 6. The time constant characterizing the decay of potentiation inceased an average of 1-5 times (range 0-8-5 times) with successive trials. 7. The increase in the magnitude of augmentation with successive trials was accompanied by a similar increase in the magnitude of the e.p.p. amplitudes during the conditioning trains, suggesting that augmentation develops during the conditioning train. In some preparatons augmentation appeared to be the major factor acting to increase e.p.p. amplitudes during the conditioning train, having a greater effect than facilitation or potentiation. 8. If a sufficiently large number of successive trials were applied, a depression of e.p.p. amplitudes developed during the conditioning trains and estimates of the magnitude of potentiation following the depressed conditioning trains were reduced...
机译:1.在低含量的条件下,从青蛙神经肌肉连接处记录终板电位(e.p.p.s),以研究反复突触活动对递质释放的长期影响。 2.在4-16小时的时间内,每7-10分钟对神经末梢进行30-100次连续的条件测试试验。每个调节测试试验均由200-600冲动调节系列组成,随后是一系列测试脉冲。通过测量e.p.p.,确定每个连续调节序列后增强和增强的衰减的幅度和时间常数。由测试脉冲产生的振幅。 3.在连续试验中,紧随条件训练后的增强幅度平均增加了3-4倍(范围1-20)。 4.随着连续试验中增强幅度的增加,增强的衰减偏离了简单的指数,在调节序列之后立即衰减得更快。通过连续试验,从增强衰减的前10或20秒获得的时间常数的估计值中,这种较快的衰减导致减小20%。如果扩增与某种物质的四次方相关,而该物质随简单的指数时程衰减,则可以解释增量衰减与简单指数的偏差。还讨论了非指数性增生衰减的一些替代性移植。 5.在连续试验中,增强的幅度增加或减少了约25%。 6.在连续试验中,表征增强作用衰减的时间常数平均增加了1-5倍(0-8-5倍)。 7.随着连续试验的增加幅度的增加,e.p.p。的幅度也有类似的增加。调理过程中的振幅,表明在调理过程中增强发展。在某些准备中,增加似乎是增加e.p.p.的主要因素。调节过程中的振幅,其作用大于促进作用或增强作用。 8.如果进行了足够多的连续试验,则e.p.p.在调节列车期间产生的振幅和在压下的调节列车之后的增强强度的估计值都降低了...

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