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Differential Dynamics of Activity Changes in Dorsolateral and Dorsomedial Striatal Loops during Learning

机译:学习过程中背外侧和背内侧纹状体循环活动变化的微分动态

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摘要

The basal ganglia are implicated in a remarkable range of functions influencing emotion and cognition as well as motor behavior. Current models of basal ganglia function hypothesize that parallel limbic, associative, and motor cortico-basal ganglia loops contribute to this diverse set of functions, but little is yet known about how these loops operate and how their activities evolve during learning. To address these issues, we recorded simultaneously in sensorimotor and associative regions of the striatum as rats learned different versions of a conditional T-maze task. We found highly contrasting patterns of activity in these regions during task performance and found that these different patterns of structured activity developed concurrently, but with sharply different dynamics. Based on the region-specific dynamics of these patterns across learning, we suggest a working model whereby dorsomedial associative loops can modulate the access of dorsolateral sensorimotor loops to the control of action.
机译:基底神经节牵涉到影响情绪和认知以及运动行为的各种功能。当前的基底神经节功能模型假设平行的边缘,联想和运动性皮质-基底神经节回路促成这种多样的功能集,但是关于这些回路如何运作以及它们在学习过程中如何发展尚不清楚。为了解决这些问题,我们在大鼠学习有条件的T型迷宫任务的不同版本的同时,在纹状体的感觉运动区和相关区进行了记录。我们在任务执行过程中发现了这些地区活动的强烈对比,发现结构化活动的这些不同模式同时发展,但动态却截然不同。基于这些模式在整个学习过程中的特定于区域的动力学,我们建议一个工作模型,通过该模型背背联合环可以调节背外侧感觉运动环对动作的控制。

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