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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Long-term potentiation in an avian basal ganglia nucleus essential for vocal learning.
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Long-term potentiation in an avian basal ganglia nucleus essential for vocal learning.

机译:鸟类基底神经节核中的长期增强作用对声音学习至关重要。

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摘要

Vocal learning in songbirds provides an excellent model for sensorimotor learning in vertebrates, with an accessible, well-defined behavior and discrete neural substrate. The rich behavioral plasticity exhibited by songbirds, however, contrasts starkly with the scarcity of candidate cellular mechanisms. Here, we report for the first time on an activity-dependent form of synaptic plasticity in area X, a component of the song system required for song learning and song maintenance. In slice preparations of zebra finch area X, pairing of high-frequency presynaptic stimulation with postsynaptic depolarization induces Hebbian long-term potentiation (LTP) of the glutamatergic inputs to spiny neurons. This form of LTP requires activation of NMDA receptors and D1-like dopamine receptors. In addition, LTP is observed in birds as young as 47 d after hatching and also in adult birds but not in younger birds, providing evidence of developmental regulation of the onset of synaptic plasticity. These properties make this form of LTP the best known candidate mechanism for reinforcement-based vocal learning in juveniles and song maintenance in adult birds.
机译:鸣禽中的声乐学习为脊椎动物的感觉运动学习提供了一个极好的模型,它具有可访问的,定义明确的行为和离散的神经底物。鸣禽表现出的丰富的行为可塑性,与候选细胞机制的稀缺形成了鲜明的对比。在这里,我们首次报告了区域X中与活动有关的突触可塑性形式,这是歌曲学习和歌曲维护所需的歌曲系统的组成部分。在斑马雀科X区的切片准备工作中,高频突触前刺激与突触后去极化的配对可诱导谷氨酸能输入对棘神经元的Hebbian长期增强(LTP)。这种形式的LTP需要激活NMDA受体和D1样多巴胺受体。此外,LTP在孵化后47 d的幼鸟中和成年鸟中均已观察到,而在幼鸟中则未观察到,这为突触可塑性发作的发育调控提供了证据。这些特性使这种形式的LTP成为少年中基于增强的声乐学习和成年鸟的歌曲维持的最著名的候选机制。

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