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A common neural circuit mechanism for internally guided and externally reinforced forms of motor learning

机译:内部学习和外部增强形式的运动学习的通用神经回路机制

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摘要

The complex skills underlying verbal and musical expression can be learned without external punishment or reward, indicating their learning is internally guided. The neural mechanisms that mediate internally guided learning are poorly understood, but a circuit comprising dopamine-releasing neurons in the midbrain ventral tegmental area (VTA) and their targets in the basal ganglia (BG) are important to externally reinforced learning. Juvenile zebra finches copy a tutor song in a process that is internally guided and, in adulthood, can learn to modify the fundamental frequency (pitch) of a target syllable in response to external reinforcement with white noise. Here we combined intersectional genetic ablation of VTA neurons, reversible blockade of dopamine receptors in the BG, and singing-triggered optogenetic stimulation of VTA terminals to establish that a common VTA – BG circuit enables internally-guided song copying and externally reinforced syllable pitch learning.
机译:语言和音乐表达的基本技能无需外部惩罚或奖励即可学习,这表明他们的学习是内部指导的。调解内部指导学习的神经机制了解甚少,但是包含中脑腹侧被盖区(VTA)中多巴胺释放神经元及其在基底神经节(BG)中的靶标的电路对于外部强化学习很重要。幼年斑马雀在内部指导的过程中复制了补习歌曲,并且在成年后可以学会响应于带有白噪声的外部强化来修改目标音节的基本频率(音高)。在这里,我们结合了VTA神经元的交叉遗传消融,BG中多巴胺受体的可逆性阻断以及VTA末端的歌唱触发光遗传学刺激,以建立一个通用的VTA – BG电路可以实现内部引导的歌曲复制和外部增强的音节音高学习。

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