Sil'skiĭ I G
Zh Vyssh Nerv Deiat Im I P Pavlova. 1997 Mar-Apr;47(2):374-92.
The unitary model of synaptic plasticity for the neocortical, hippocampal and cerebellar Purkinje cells is proposed. The model is based on the new modification rules. It was assumed that the necessary conditions for synaptic modifications are: the coincidence of pre- and postsynaptic cells activity (Hebbian rule) and the change of pre- and/or postsynaptic cell activity during the time that is sufficient for the shift of the ratio between protein kinases and protein phosphatases in postsynaptic cell. According to the suggested model similar mechanisms underlie homo-, hetero- and associative LTP and LTD of excitatory and inhibitory synaptic transmission. The involvement of cAMP and cGMP in synaptic plasticity of neocortical/hippocampal and Purkinje cells, correspondingly, may underlie the different Ca(2+)-dependent modification rules in these structures. The model is used for the analysis of stimulation parameters influence on the direction of synaptic modification. It is shown that stimulation frequency (Ca2+ rise) necessary for LTP or LTD induction is relative but not absolute.
提出了新皮质、海马体和小脑浦肯野细胞突触可塑性的单一模型。该模型基于新的修饰规则。假设突触修饰的必要条件是:突触前和突触后细胞活动的重合(赫布规则)以及在足够的时间内突触前和/或突触后细胞活动的变化,该时间足以使突触后细胞中蛋白激酶和蛋白磷酸酶的比例发生变化。根据所提出的模型,类似的机制是兴奋性和抑制性突触传递的同型、异型和联合性长时程增强(LTP)和长时程抑制(LTD)的基础。相应地,cAMP和cGMP参与新皮质/海马体和浦肯野细胞的突触可塑性,可能是这些结构中不同的钙依赖性修饰规则的基础。该模型用于分析刺激参数对突触修饰方向的影响。结果表明,LTP或LTD诱导所需的刺激频率(Ca2+升高)是相对的而非绝对的。