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Distribution of neural plasticity in cerebellum-dependent motor learning.小脑依赖型运动学习中神经可塑性的分布
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The organization of plasticity in the cerebellar cortex: from synapses to control.小脑皮质可塑性的组织:从突触到控制。
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Long-term depression as a model of cerebellar plasticity.作为小脑可塑性模型的长时程抑制
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A cerebellar learning model of vestibulo-ocular reflex adaptation in wild-type and mutant mice.野生型和突变型小鼠前庭眼反射适应的小脑学习模型。
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Distinct kinetics of synaptic structural plasticity, memory formation, and memory decay in massed and spaced learning.集中学习和间隔学习中突触结构可塑性、记忆形成和记忆消退的动力学特征不同。
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Distributed cerebellar plasticity implements adaptable gain control in a manipulation task: a closed-loop robotic simulation.分布式小脑可塑性在操纵任务中实现了自适应增益控制:闭环机器人模拟。
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Transfer of memory trace of cerebellum-dependent motor learning in human prism adaptation: a model study.人类视轴矫正适应中小脑依赖型运动学习记忆痕迹的转移:模型研究。
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Realtime cerebellum: a large-scale spiking network model of the cerebellum that runs in realtime using a graphics processing unit.实时小脑:一个使用图形处理单元实时运行的小脑大规模尖峰网络模型。
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小脑前庭学习训练后阶段记忆巩固的建模

Modeling memory consolidation during posttraining periods in cerebellovestibular learning.

作者信息

Yamazaki Tadashi, Nagao Soichi, Lennon William, Tanaka Shigeru

机构信息

Graduate School of Informatics and Engineering, and

Brain Science Promotion Division, RIKEN Brain Science Institute, Wako, Saitama 351-0198, Japan; and.

出版信息

Proc Natl Acad Sci U S A. 2015 Mar 17;112(11):3541-6. doi: 10.1073/pnas.1413798112. Epub 2015 Mar 3.

DOI:10.1073/pnas.1413798112
PMID:25737547
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4371920/
Abstract

Long-term depression (LTD) at parallel fiber-Purkinje cell (PF-PC) synapses is thought to underlie memory formation in cerebellar motor learning. Recent experimental results, however, suggest that multiple plasticity mechanisms in the cerebellar cortex and cerebellar/vestibular nuclei participate in memory formation. To examine this possibility, we formulated a simple model of the cerebellum with a minimal number of components based on its known anatomy and physiology, implementing both LTD and long-term potentiation (LTP) at PF-PC synapses and mossy fiber-vestibular nuclear neuron (MF-VN) synapses. With this model, we conducted a simulation study of the gain adaptation of optokinetic response (OKR) eye movement. Our model reproduced several important aspects of previously reported experimental results in wild-type and cerebellum-related gene-manipulated mice. First, each 1-h training led to the formation of short-term memory of learned OKR gain at PF-PC synapses, which diminished throughout the day. Second, daily repetition of the training gradually formed long-term memory that was maintained for days at MF-VN synapses. We reproduced such memory formation under various learning conditions. Third, long-term memory formation occurred after training but not during training, indicating that the memory consolidation occurred during posttraining periods. Fourth, spaced training outperformed massed training in long-term memory formation. Finally, we reproduced OKR gain changes consistent with the changes in the vestibuloocular reflex (VOR) previously reported in some gene-manipulated mice.

摘要

平行纤维-浦肯野细胞(PF-PC)突触处的长时程抑制(LTD)被认为是小脑运动学习中记忆形成的基础。然而,最近的实验结果表明,小脑皮质和小脑/前庭核中的多种可塑性机制参与了记忆形成。为了检验这种可能性,我们根据小脑已知的解剖结构和生理学知识,构建了一个具有最少组件数量的简单小脑模型,在PF-PC突触和苔藓纤维-前庭核神经元(MF-VN)突触处同时实现LTD和长时程增强(LTP)。利用这个模型,我们对视动反应(OKR)眼动的增益适应进行了模拟研究。我们的模型重现了先前在野生型和小脑相关基因操作小鼠中报道的实验结果的几个重要方面。首先,每次1小时的训练导致PF-PC突触处习得的OKR增益形成短期记忆,这种记忆在一天中逐渐减弱。其次,每天重复训练逐渐形成在MF-VN突触处维持数天的长期记忆。我们在各种学习条件下重现了这种记忆形成。第三,长期记忆形成发生在训练后而非训练期间,这表明记忆巩固发生在训练后的时间段。第四,间隔训练在长期记忆形成方面优于集中训练。最后,我们重现了与先前在一些基因操作小鼠中报道的前庭眼反射(VOR)变化一致的OKR增益变化。