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鸣禽的发声学习需要在类似运动皮层的核团中进行胆碱能信号传导。

Vocal learning in songbirds requires cholinergic signaling in a motor cortex-like nucleus.

作者信息

Puzerey Pavel A, Maher Kamal, Prasad Nikil, Goldberg Jesse H

机构信息

Department of Neurobiology and Behavior, Cornell University , Ithaca, New York.

出版信息

J Neurophysiol. 2018 Oct 1;120(4):1796-1806. doi: 10.1152/jn.00078.2018. Epub 2018 Jul 11.

Abstract

Cholinergic inputs to cortex modulate plasticity and sensory processing, yet little is known about their role in motor control. Here, we show that cholinergic signaling in a songbird vocal motor cortical area, the robust nucleus of the arcopallium (RA), is required for song learning. Reverse microdialysis of nicotinic and muscarinic receptor antagonists into RA in juvenile birds did not significantly affect syllable timing or acoustic structure during vocal babbling. However, chronic blockade over weeks reduced singing quantity and impaired learning, resulting in an impoverished song with excess variability, abnormal acoustic features, and reduced similarity to tutor song. The demonstration that cholinergic signaling in a motor cortical area is required for song learning motivates the songbird as a tractable model system to identify roles of the basal forebrain cholinergic system in motor control. NEW & NOTEWORTHY Cholinergic inputs to cortex are evolutionarily conserved and implicated in sensory processing and synaptic plasticity. However, functions of cholinergic signals in motor areas are understudied and poorly understood. Here, we show that cholinergic signaling in a songbird vocal motor cortical area is not required for normal vocal variability during babbling but is essential for developmental song learning. Cholinergic modulation of motor cortex is thus required for learning but not for the ability to sing.

摘要

胆碱能输入到皮层会调节可塑性和感觉处理,但它们在运动控制中的作用却鲜为人知。在这里,我们表明,鸣禽发声运动皮层区域——弓状皮质粗壮核(RA)中的胆碱能信号传导是歌曲学习所必需的。在幼鸟中,将烟碱样和毒蕈碱样受体拮抗剂逆向微透析到RA中,对发声咿呀学语期间的音节时长或声学结构没有显著影响。然而,数周的慢性阻断会减少歌唱量并损害学习,导致歌曲贫乏,变异性过大,声学特征异常,与示范鸟歌曲的相似度降低。运动皮层中的胆碱能信号传导是歌曲学习所必需的这一证明,促使鸣禽成为一个易于处理的模型系统,以确定基底前脑胆碱能系统在运动控制中的作用。新发现与值得注意的点:胆碱能输入到皮层在进化上是保守的,并且与感觉处理和突触可塑性有关。然而,胆碱能信号在运动区域的功能研究不足且了解甚少。在这里,我们表明,鸣禽发声运动皮层区域中的胆碱能信号传导在咿呀学语期间对正常发声变异性不是必需的,但对发育性歌曲学习至关重要。因此,运动皮层的胆碱能调节是学习所必需的,但不是唱歌能力所必需的。

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What do phasic cholinergic signals do?阶段性胆碱能信号有什么作用?
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