Dityatev A E, Kozhanov V M, Gapanovich S O
Laboratory of Evolution of Interneuronal Interaction, Sechenov Institute of Evolutionary Physiology and Biochemistry, Russian Academy of Sciences, St. Petersburg.
J Neurosci Methods. 1992 Jul;43(2-3):201-14. doi: 10.1016/0165-0270(92)90030-h.
A theoretical study of effects of the different factors on fluctuation of post-synaptic potential (PSP) amplitudes was undertaken, using computation of regions of permissible values (RPV) of the ratio between the variance and the mean number of the quanta released (R1) and the ratio between the third moment and the variance (R2). The RPVs of these indexes for the binomial model were compared with regions determined for a number of models incorporating several factors. It has been shown that the involvement of temporal non-uniformity of transmitter release probability, decremental spreading of potentials along dendrites, and failure of spike propagation give the values of skewness index R2 less, compared to the binomial model. Simultaneously, a number of other factors, especially spatial non-uniformity of release probabilities in single release sites, would give amplitude histograms with high positive values of the index. The values of R1 and R2, calculated for 21 samples of sensorimotor EPSP amplitudes, were biased from RPV of these parameters constructed for the binomial model. The scattergram of R1 and R2 can be explained by the presence of two kinds of contacts which release quantum with different probabilities. The same was true for the beta-model based on the assumption that probabilities of quantal release are a sample of values of random variable that has beta-distribution. From analysis of the distribution of individual release probabilities, obtained from evaluation of beta-model parameters, is concluded that a greater part of boutons in the sensorimotor synapses release transmitter with very low probabilities, there being, however, a few boutons with probabilities close to 1.
利用释放量子的方差与平均数量之比(R1)以及三阶矩与方差之比(R2)的允许值区域(RPV)计算,对不同因素对突触后电位(PSP)幅度波动的影响进行了理论研究。将二项式模型的这些指标的RPV与包含多个因素的一些模型所确定的区域进行了比较。结果表明,与二项式模型相比,递质释放概率的时间不均匀性、电位沿树突的递减传播以及锋电位传播失败的影响使得偏度指数R2的值更小。同时,许多其他因素,特别是单个释放位点释放概率的空间不均匀性,会使幅度直方图的该指数具有较高的正值。为21个感觉运动型兴奋性突触后电位(EPSP)幅度样本计算的R1和R2值偏离了为二项式模型构建的这些参数的RPV。R1和R2的散点图可以用存在两种以不同概率释放量子的接触来解释。基于量子释放概率是具有贝塔分布的随机变量值样本这一假设的贝塔模型也是如此。通过对从贝塔模型参数评估中获得的单个释放概率分布的分析得出结论,感觉运动突触中大部分 boutons 以非常低的概率释放递质,然而,也有一些 boutons 的概率接近1。