神经科学
英语
运动学习
中棘神经元
记忆巩固
运动皮层
纹状体
初级运动皮层
心理学
突触可塑性
生物
海马体
多巴胺
生物化学
受体
刺激
作者
Fuu-Jiun Hwang,Richard H. Roth,Yu‐Wei Wu,Yue Sun,Destany K. Kwon,Yu Liu,Jun Ding
出处
期刊:Neuron
[Cell Press]
日期:2022-07-08
卷期号:110 (17): 2790-2801.e5
被引量:65
标识
DOI:10.1016/j.neuron.2022.06.006
摘要
Learning and consolidation of new motor skills require plasticity in the motor cortex and striatum, two key motor regions of the brain. However, how neurons undergo synaptic changes and become recruited during motor learning to form a memory engram remains unknown. Here, we train mice on a motor learning task and use a genetic approach to identify and manipulate behavior-relevant neurons selectively in the primary motor cortex (M1). We find that the degree of M1 engram neuron reactivation correlates with motor performance. We further demonstrate that learning-induced dendritic spine reorganization specifically occurs in these M1 engram neurons. In addition, we find that motor learning leads to an increase in the strength of M1 engram neuron outputs onto striatal spiny projection neurons (SPNs) and that these synapses form clusters along SPN dendrites. These results identify a highly specific synaptic plasticity during the formation of long-lasting motor memory traces in the corticostriatal circuit.
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