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A subcortical circuit linking the cerebellum to the basal ganglia engaged in vocal learning

机译:皮层下回路将小脑与从事语音学习的基底神经节连接

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Speech is a complex sensorimotor skill, and vocal learning involves both the basal ganglia and the cerebellum. These subcortical structures interact indirectly through their respective loops with thalamo-cortical and brainstem networks, and directly via subcortical pathways, but the role of their interaction during sensorimotor learning remains undetermined. While songbirds and their song-dedicated basal ganglia-thalamo-cortical circuitry offer a unique opportunity to study subcortical circuits involved in vocal learning, the cerebellar contribution to avian song learning remains unknown. We demonstrate that the cerebellum provides a strong input to the song-related basal ganglia nucleus in zebra finches. Cerebellar signals are transmitted to the basal ganglia via a disynaptic connection through the thalamus and then conveyed to their cortical target and to the premotor nucleus controlling song production. Finally, cerebellar lesions impair juvenile song learning, opening new opportunities to investigate how subcortical interactions between the cerebellum and basal ganglia contribute to sensorimotor learning.
机译:言语是一种复杂的感觉运动技能,而言语学习涉及基底神经节和小脑。这些皮层下结构通过其各自的环与丘脑皮层和脑干网络间接相互作用,并直接通过皮层下途径相互作用,但是它们在感觉运动学习过程中的相互作用仍未确定。尽管鸣禽及其专用于歌曲的基底神经节-丘脑-皮层回路为研究与声音学习有关的皮层下回路提供了独特的机会,但小脑对禽类歌曲学习的贡献仍然未知。我们证明,小脑为斑马雀中与歌曲相关的基底神经节核提供了强大的输入。小脑信号通过丘脑的非突触连接传递到基底神经节,然后传递到它们的皮质靶标和控制运动歌曲产生的运动前核。最后,小脑病变损害了青少年的歌曲学习,为研究小脑与基底神经节之间的皮层下相互作用如何促进感觉运动学习提供了新的机会。

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