Ito M
Laboratory for Neural Networks, Frontier Research Programm, Woko, Japan.
Rev Neurol (Paris). 1990;146(10):564-9.
A general functional model of the cerebellum is proposed based on recent anatomical physiological findings. A cerebellar microcomplex composed of a cortical microzone and a small cell group in a cerebellar or vestibular nucleus acts as an adaptive controller based on the synaptic plasticity of the long-term depression type in Purkinje cells, which is effected by control error signals of climbing fibers. Microcomplexes will be inserted in reflex arcs, command systems of voluntary motor control, and probably even cortical systems performing certain mental activities, providing adaptive-learning capabilities to these systems.
基于最近的解剖生理学发现,提出了一种小脑的通用功能模型。由小脑皮质微区和小脑或前庭核中的小细胞群组成的小脑微复合体,基于浦肯野细胞中长时程抑制类型的突触可塑性,作为一种自适应控制器,这是由攀缘纤维的控制误差信号所影响的。微复合体将被插入反射弧、自主运动控制的指令系统,甚至可能插入执行某些心理活动的皮质系统,为这些系统提供自适应学习能力。