Voronin L L, Kuhnt U, Hess G
Max-Planck-Institute for Biophysical Chemistry, FRG, Goettingen.
Neirofiziologiia. 1990;22(6):752-61.
Excitatory postsynaptic potentials (EPSPs) were recorded in guinea pig hippocampal slices (area CA1) from 13 neurons after single or double-pulse stimulation of stratum radiatum (the Schaffer collaterals) and stratum oriens. Amplitudes of 23 EPSPs (9 neurons, 12 pathways) grew 5 to 55 min after 10 tetanic stimulations of the Schaffer collaterals. This increase has been considered as a long-term potentiation (LTP). A statistical analysis was carried out by four methods of the quantal hypothesis based on the binomial distribution. It revealed an increase in the mean quantal content (m) during LTP. An increase in the quantal size was also observed in the majority of the cases but it showed only a weak correlation with the LTP magnitude and for some methods it was statistically significant only for the periods later than 15 min after tetanic stimulation. A well expressed increase in m demonstrated by various methods corresponds to data of the previous in vivo studies and favours the presynaptic location of mechanisms of the LTP maintenance.
在豚鼠海马切片(CA1区)的13个神经元中,记录了在对辐射层(沙费尔侧支)和原层进行单脉冲或双脉冲刺激后产生的兴奋性突触后电位(EPSP)。在对沙费尔侧支进行10次强直刺激后,23个EPSP(9个神经元,12条通路)的幅度在5至55分钟后增大。这种增大被认为是长时程增强(LTP)。基于二项分布,通过四种量子假说方法进行了统计分析。结果显示在LTP期间平均量子含量(m)增加。在大多数情况下也观察到量子大小增加,但它与LTP幅度仅显示出微弱的相关性,并且对于某些方法,仅在强直刺激后15分钟后的时间段内具有统计学意义。各种方法所显示的m的明显增加与先前的体内研究数据相符,并且支持LTP维持机制的突触前定位。