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A basal ganglia-forebrain circuit in the songbird biases motor output to avoid vocal errors

机译:鸣禽中的基底神经节-脑回路使电机输出偏置以避免声音错误

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摘要

In songbirds, as in mammals, basal ganglia-forebrain circuits are necessary for the learning and production of complex motor behaviors; however, the precise role of these circuits remains unknown. It has recently been shown that a basal ganglia-forebrain circuit in the songbird, which projects directly to vocal–motor circuitry, has a premotor function driving exploration necessary for vocal learning. It has also been hypothesized that this circuit, known as the anterior forebrain pathway (AFP), may generate an instructive signal that improves performance in the motor pathway. Here, we show that the output of the AFP directly implements a motor correction that reduces vocal errors. We use disruptive auditory feedback, contingent on song pitch, to induce learned changes in song structure over the course of hours and find that reversible inactivation of the output of the AFP produces an immediate regression of these learned changes. Thus, the AFP is involved in generating an error-reducing bias, which could increase the efficiency of vocal exploration and instruct synaptic changes in the motor pathway. We also find that learned changes in the song generated by the AFP are incorporated into the motor pathway within 1 day. Our observations support a view that basal ganglia-related circuits directly implement behavioral adaptations that minimize errors and subsequently stabilize these adaptations by training premotor cortical areas.
机译:像哺乳动物一样,在鸣禽中,基底神经节-前脑回路对于学习和产生复杂的运动行为是必不可少的。然而,这些电路的确切作用仍然未知。最近的研究表明,鸣禽中的基底神经节-脑回路直接投射到声-运动回路,具有驱动声学习所需的探索前功能。还假设该电路称为前脑前路(AFP),可产生指导信号,从而改善运动通路的性能。在这里,我们表明AFP的输出直接实现了减少声音误差的电机校正。我们根据歌曲的音调使用破坏性的听觉反馈,以在数小时的过程中诱导学习的歌曲结构变化,并发现AFP输出的可逆失活会立即使这些学习的变化消退。因此,AFP参与产生减少错误的偏见,这可以提高声音探索的效率并指示运动路径中的突触变化。我们还发现,由AFP生成的歌曲中所学的变化会在1天之内整合到运动路径中。我们的观察结果支持这样一种观点,即与基底神经节相关的电路直接执行行为适应,以最大程度地减少错误,并随后通过训练运动前皮质区域来稳定这些适应。

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