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化学突触传递的瞬态分析

Transient analysis of a chemical synaptic transmission.

作者信息

Melkonian D S

机构信息

Orbeli Institute of Physiology, Academy of Sciences of Armenia, Yerevan.

出版信息

Biol Cybern. 1993;68(4):341-50. doi: 10.1007/BF00201859.

Abstract

The statistical dynamics of an impulse induced quanta turnover is studied by means of a nonstationary stochastic model--double barrier synapse--resulting from a previously developed mathematical theory of chemical synaptic transmission. An essential aspect of nonstationarities of the model is that the interpool quanta transfers follow binomial distribution at impulse arrival time, while in the absence of stimulation they obey Yule-Furry statistics. Under a variety of conditions, corresponding to those in actual experiments, the transient behaviour of the model is simulated and analysed in detail. As a result, the quantitative description of immediate and delayed components of synaptic action is introduced. If simulations of quantal fluctuations are performed numerically, then for the treatment of dynamic regularities, besides numerical procedures, an analytical method of envelopes is developed. It is supported by the theorems which reduce behaviour of the double-barrier synapse to the super-position of simpler solutions for single-barrier systems. With short-term facilitation quantitative analysis and simulations, the synaptic resonance phenomenon is theoretically predicted: different resonant frequencies are found at different levels of facilitation. The importance of this phenomenon treated as a clue to the information processing capabilities of a chemical synapse is discussed.

摘要

通过一个非平稳随机模型——双势垒突触,对脉冲诱导的量子周转的统计动力学进行了研究。该模型源自先前发展的化学突触传递数学理论。该模型非平稳性的一个重要方面是,在脉冲到达时刻,池间量子转移遵循二项分布,而在无刺激情况下,它们服从尤尔 - 弗里统计。在对应于实际实验的各种条件下,对该模型的瞬态行为进行了详细的模拟和分析。结果,引入了对突触作用的即时和延迟成分的定量描述。如果对量子涨落进行数值模拟,那么为了处理动力学规律,除了数值方法外,还开发了一种包络分析方法。它得到了一些定理的支持,这些定理将双势垒突触的行为简化为单势垒系统的更简单解的叠加。通过短期易化的定量分析和模拟,从理论上预测了突触共振现象:在不同的易化水平发现了不同的共振频率。讨论了这一现象作为化学突触信息处理能力线索的重要性。

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