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Stable Encoding of Task Structure Coexists With Flexible Coding of Task Events in Sensorimotor Striatum

机译:感觉运动纹状体中任务结构的稳定编码与任务事件的灵活编码共存

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摘要

The sensorimotor striatum, as part of the brain's habit circuitry, has been suggested to store fixed action values as a result of stimulus-response learning and has been contrasted with a more flexible system that conditionally assigns values to behaviors. The stability of neural activity in the sensorimotor striatum is thought to underlie not only normal habits but also addiction and clinical syndromes characterized by behavioral fixity. By recording in the sensorimotor striatum of mice, we asked whether neuronal activity acquired during procedural learning would be stable even if the sensory stimuli triggering the habitual behavior were altered. Contrary to expectation, both fixed and flexible activity patterns appeared. One, representing the global structure of the acquired behavior, was stable across changes in task cuing. The second, a fine-grain representation of task events, adjusted rapidly. Such dual forms of representation may be critical to allow motor and cognitive flexibility despite habitual performance.
机译:提示运动纹状体是大脑习惯电路的一部分,由于刺激-响应学习的结果,它建议存储固定的动作值,并且已与更灵活的系统(有条件地为行为分配值)形成对比。感觉运动纹状体中神经活动的稳定性不仅被认为是正常习惯的基础,而且还包括以行为固定为特征的成瘾和临床综合征。通过记录小鼠的感觉运动纹状体,我们询问即使改变了触发习惯行为的感觉刺激,在程序学习过程中获得的神经元活动也会稳定。与预期相反,固定和灵活的活动模式都出现了。一个代表所获得行为的整体结构,在任务提示的变化中保持稳定。第二个是任务事件的细粒度表示,可以快速调整。尽管习惯性表现,这种双重形式的表示对于允许运动和认知灵活性可能是至关重要的。

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