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The Acquisition of Goal-Directed Actions Generates Opposing Plasticity in Direct and Indirect Pathways in Dorsomedial Striatum

机译:目标定向动作的获得在背侧纹状体的直接和间接途径中产生相反的可塑性

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摘要

A cortical-basal ganglia network involving, particularly, the posterior region of dorsomedial striatum (DMS) has been implicated in the acquisition of goal-directed actions; however, no direct evidence of learning-related plasticity in this striatal region has been reported, nor is it known whether, or which, specific cell types are involved in this learning process. The striatum is primarily composed of two classes of spiny projection neurons (SPNs): the striatonigral and striatopallidal SPNs, which express dopamine D1 and D2 receptors, respectively. Here we establish that, in mice, the acquisition of goal-directed actions induced plasticity in both D1- and D2-SPNs specifically in the DMS and, importantly, that these changes were in opposing directions; after learning, AMPA/NMDA ratios were increased in D1-SPNs and reduced in the D2-SPNs in the DMS. Such opposing plasticity could provide the basis for rapidly rebiasing the control of task-specific actions, and its dysregulation could underlie disorders associated with striatal function.
机译:皮层-基底神经节网络,特别是背侧纹状体(DMS)的后部区域,已经牵涉到目标定向动作的获得。然而,尚无有关该纹状体区域与学习有关的可塑性的直接证据的报道,也不清楚这种学习过程是否涉及特定的细胞类型或哪些特定的细胞类型。纹状体主要由两类棘突状投射神经元(SPN)组成:纹状体顶神经和纹状体蛛网膜SPN,分别表达多巴胺D1和D2受体。在这里,我们确定,在小鼠中,目标定向动作的获得在D1-SPN和D2-SPN中都诱导了可塑性,特别是在DMS中,并且重要的是,这些变化是相反的。学习后,DMS中D1-SPN中的AMPA / NMDA比增加,而D2-SPN中AMPA / NMDA比降低。这种相反的可塑性可以为快速重新控制针对特定任务的行为提供基础,并且其失调可能是与纹状体功能相关的疾病的基础。

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