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首页> 外文期刊>Neuron >The Basal Ganglia Is Necessary for Learning Spectral, but Not Temporal, Features of Birdsong
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The Basal Ganglia Is Necessary for Learning Spectral, but Not Temporal, Features of Birdsong

机译:基础神经节是学习鸟鸣的频谱特性而非时间特性所必需的

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摘要

Executing a motor skill requires the brain to control which muscles to activate at what times. How these aspects of control-motor implementation and timing-are acquired, and whether the learning processes underlying them differ, is not well understood. To address this, we used a reinforcement learning paradigm to independently manipulate both spectral and temporal features of birdsong, a complex learned motor sequence, while recording and perturbing activity in underlying circuits. Our results uncovered a striking dissociation in how neural circuits underlie learning in the two domains. The basal ganglia was required for modifying spectral, but not temporal, structure. This functional dissociation extended to the descending motor pathway, where recordings from a premotor cortex analog nucleus reflected changes to temporal, but not spectral, structure. Our results reveal a strategy in which the nervous system employs different and largely independent circuits to learn distinct aspects of a motor skill.
机译:执行运动技能需要大脑控制在什么时间激活哪些肌肉。如何获得控制电机实施和定时的这些方面,以及它们背后的学习过程是否有所不同,这一点尚未得到很好的理解。为了解决这个问题,我们使用了强化学习范式来独立地操纵鸟鸣的频谱和时间特征,而鸟鸣是一个复杂的学习的运动序列,同时记录和扰乱了底层电路中的活动。我们的研究结果揭示了神经回路如何在这两个领域的学习中脱颖而出。需要基底神经节来改变光谱结构,而不是时间结构。这种功能解离扩展到了运动下降通道,运动前皮质类似核的记录反映了时间结构的变化,但没有光谱结构的变化。我们的结果揭示了一种策略,其中神经系统采用不同且很大程度上独立的回路来学习运动技能的各个方面。

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