Sil'kis I G
Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow.
Neurosci Behav Physiol. 2001 Nov-Dec;31(6):573-81. doi: 10.1023/a:1012308825112.
A model of plasticity is proposed for the olivocerebellar neural network in which the efficiency of the synaptic inputs to different neurons changes simultaneously and interdependently. This effect is based on the following functional characteristics of the network: simultaneous arrival of an afferent signal via mossy fibers to input granule cells and output neurons in the deep cerebellar nuclei; synchronous arrival of the signal from the inferior olive, via climbing fibers and their collaterals, at cells in the input and output layers, and to Purkinje cells, and the existence of local excitatory, inhibitory, and disinhibitory feedback circuits. Increases (decreases) in post-tetanic Ca2+ concentrations relative to the level evoked by the preceding stimulation in these cells are accompanied by decreases (increases) in the activity of cGMP-dependent protein kinase G, with increases (decreases) in the activity of protein phosphatase I. As a result, dephosphorylation (phosphorylation) of ionotropic receptors is accompanied by simultaneous depression (potentiation) of the excitatory input to a given neuron and potentiation (depression) of the inhibitory input to the same neuron. The depolarizing signal from the inferior olive affects synapse modification in different layers of the network in such a way that its presence (absence) depresses (potentiates) the signal sent from the output cells of the cerebellum to other structures.
提出了一种橄榄小脑神经网络的可塑性模型,其中不同神经元的突触输入效率同时且相互依赖地发生变化。这种效应基于该网络的以下功能特性:传入信号通过苔藓纤维同时到达输入颗粒细胞和小脑深部核团中的输出神经元;信号从下橄榄核通过攀缘纤维及其侧支同步到达输入层和输出层的细胞以及浦肯野细胞;以及存在局部兴奋性、抑制性和去抑制性反馈回路。相对于这些细胞中先前刺激所诱发的水平,强直后Ca2+浓度的升高(降低)伴随着环磷酸鸟苷依赖性蛋白激酶G活性的降低(升高),同时蛋白磷酸酶I的活性升高(降低)。结果,离子型受体的去磷酸化(磷酸化)伴随着给定神经元兴奋性输入的同时抑制(增强)以及同一神经元抑制性输入的增强(抑制)。来自下橄榄核的去极化信号以这样一种方式影响网络不同层中的突触修饰,即其存在(不存在)会抑制(增强)从小脑输出细胞发送到其他结构的信号。