Department of Otolaryngology, University of Washington, Seattle, Washington 98195, USA.
J Neurosci. 2010 Apr 21;30(16):5730-43. doi: 10.1523/JNEUROSCI.5974-09.2010.
Cortico-basal ganglia (BG) circuits are thought to promote the acquisition of motor skills through reinforcement learning. In songbirds, a specialized portion of the BG is responsible for song learning and plasticity. This circuit generates song variability that underlies vocal experimentation in young birds and modulates song variability depending on the social context in adult birds. When male birds sing in the presence of a female, a social context associated with decreased BG-induced song variability, the extracellular dopamine (DA) level is increased in the avian BG nucleus Area X. These results suggest that DA could trigger song variability changes through its action in Area X. Consistent with this hypothesis, we report that DA delivered to Area X weakens the output signal of the avian cortico-BG circuit. Acting through D(1) receptors, DA reduced responses in Area X to song playback and to electrical stimulation of its afferent cortical nucleus HVC (used as a proper name). Specifically, DA reduced the response to direct excitatory input and decreased firing variability in Area X pallidal neurons, which provide the output to the thalamus. As a consequence, DA delivery in Area X also decreased responses to song playback in the cortical output nucleus of the BG loop, the lateral magnocellular nucleus of the anterior nidopallium. Further, interfering with D(1) receptor transmission in Area X abolished social context-related changes in song variability. In conclusion, we propose that DA acts on D(1) receptors in Area X to modulate the BG output signal and trigger changes in song variability.
皮质基底神经节(BG)回路被认为通过强化学习促进运动技能的获得。在鸣禽中,BG 的一个专门部分负责学习和可塑性。该回路产生了歌声的可变性,这是年轻鸟类发声实验的基础,并根据成年鸟类的社会环境来调节歌声的可变性。当雄性鸟类在雌性鸟类存在的情况下唱歌时,这是一个与 BG 诱导的歌声可变性降低相关的社会环境,鸟类 BG 核区 X 中的细胞外多巴胺(DA)水平会升高。这些结果表明,DA 可以通过其在 Area X 的作用触发歌声变化。与该假设一致,我们报告说,DA 输送到 Area X 会削弱鸟类皮质-BG 回路的输出信号。DA 通过 D1 受体作用,降低了 Area X 对歌曲回放和对其传入皮质核 HVC(用作专有名词)的电刺激的反应。具体来说,DA 降低了 Area X 苍白球神经元的直接兴奋性输入反应和放电可变性,这些神经元为丘脑提供输出。因此,DA 在 Area X 中的输送也降低了 BG 回路皮质输出核、前脑的外侧大细胞核对歌曲回放的反应。此外,在 Area X 中干扰 D1 受体传递会消除与社会环境相关的歌声可变性变化。总之,我们提出 DA 通过作用于 Area X 中的 D1 受体来调节 BG 的输出信号,并触发歌声可变性的变化。