首页> 美国卫生研究院文献>The Journal of Physiology >A quantitative description of tetanic and post-tetanic potentiation of transmitter release at the frog neuromuscular junction.
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A quantitative description of tetanic and post-tetanic potentiation of transmitter release at the frog neuromuscular junction.

机译:青蛙神经肌肉交界处递质释放的强直性和强直性增强的定量描述。

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摘要

1. End-plate potential (e.p.p.s) were recorded with a surface electrode from frog neuromuscular junctions blocked with high Mg and low Ca to study post-tetanic potentiation (potentiation). 2. The magnitude of potentiation was not directly related to the number of conditioning impulses, but was a function of the frequency and duration of the conditioning stimulation. 3. Potentiation was always greater following an equal number of impulses delivered at a higher frequency of stimulation. 4. Plots of the magnitude of potentiation against the number of conditioning impulses would sometimes show an upward inflexion depending on the parameters of stimulation. 5. These experimental observations were described by a model based on the assumption (1) that potentiation is linearly related to a residual substance, R(t), which accumulates in the nerve terminal during repetitive stimulation, and (2) that each nerve impulse adds an identical increment, r, of this residual substance. The data were not described by assuming a 4th power relationship between potentiation and R(t). 6. The upward inflexion in potentiation (see paragraph 4) is described by the model as resulting from an increase in the time constant for the decay of potentiation as the magnitude of potentiation increases. 7. The increment of residual substance r added by each impulse was independent of the amount of transmitter released during the conditioning train. This increment typically increased transmitter release by amount 1% of the control level in the absence of potentiation. 8. Suggestions are given to explain why potentiation of transmitter release, which is thought to arise from an accumulation of Ca-2+ in the nerve terminal, can be described assuming a linear relationship between potentiation and R(t), the proposed substance responsible for potentiation, under experimental conditions in which a 3rd to 4th power relationship would be expected to exist between external Ca concentration and evoked transmitter release.
机译:1.用来自高Mg和低Ca的青蛙神经肌肉接头的表面电极记录终板电位(e.p.p.s),以研究强直性强直。 2.增强的强度与调节冲动的数量不直接相关,而是调节刺激的频率和持续时间的函数。 3.在以较高的刺激频率传递相同数量的脉冲后,增强作用总是更大。 4.根据刺激的参数,针对调节脉冲数量的增强幅度图有时会显示向上弯曲。 5.这些实验观察结果由一个模型描述,该模型基于以下假设:(1)增强与重复刺激过程中累积在神经末梢的残余物质R(t)线性相关,以及(2)每个神经冲动添加此残留物质的相同增量r。假设电位和R(t)之间的幂次为4,则没有描述数据。 6.模型描述了增强作用的向上弯曲(见第4段)是由于增强作用的幅度增加时增强作用衰减的时间常数增加而引起的。 7.每次脉冲所增加的残留物质r的增量与调节过程中释放的变送器数量无关。在没有增强作用的情况下,此增量通常将变送器释放量增加为控制水平的1%。 8.提出了一些建议,以解释为什么假定递质与R(t)之间呈线性关系,而递质释放的增效可能被认为是由神经末梢中的Ca-2 +积累引起的,该递质释放可能是由神经末梢中的Ca-2 +积累引起的。为了增强电位,在预期外部Ca浓度与诱发的递质释放之间存在3至4次幂关系的实验条件下。

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