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Cell-Type-Specific Sensorimotor Processing in Striatal Projection Neurons during Goal-Directed Behavior

机译:目标定向行为期间纹状体投射神经元中的细胞类型特定的感觉运动处理。

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摘要

Goal-directed sensorimotor transformation drives important aspects of mammalian behavior. The striatum is thought to play a key role in reward-based learning and action selection, receiving glutamatergic sensorimotor signals and dopaminergic reward signals. Here, we obtain whole-cell membrane potential recordings from the dorsolateral striatum of mice trained to lick a reward spout after a whisker deflection. Striatal projection neurons showed strong task-related modulation, with more depolarization and action potential firing on hit trials compared to misses. Direct pathway striatonigral neurons, but not indirect pathway striatopallidal neurons, exhibited a prominent early sensory response. Optogenetic stimulation of direct pathway striatonigral neurons, but not indirect pathway striatopallidal neurons, readily substituted for whisker stimulation evoking a licking response. Our data are consistent with direct pathway striatonigral neurons contributing a "go'' signal for goal-directed sensorimotor transformation leading to action initiation.
机译:目标定向的感觉运动转换驱动了哺乳动物行为的重要方面。纹状体被认为在基于奖励的学习和行动选择中起关键作用,接收谷氨酸能的感觉运动信号和多巴胺能的奖励信号。在这里,我们从晶须偏转后舔舔奖励壶嘴的小鼠的背外侧纹状体获得全细胞膜电位记录。与未命中试验相比,纹状体投射神经元显示出与任务相关的强烈调制,在命中试验中具有更多的去极化和动作电位触发。直接途径的纹状体神经元,而不是间接途径的纹状体神经元,表现出突出的早期感觉反应。直接途径纹状体顶神经元的光遗传学刺激,而不是间接途径纹状体外皮层神经元的光遗传学刺激,容易替代晶须刺激,引起舔反应。我们的数据与直接通路的纹状体神经元一致,这些神经元为目标导向的感觉运动转化贡献了一个“ go”信号,从而导致动作启动。

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