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首页> 外文期刊>The Journal of Comparative Neurology >Developmental origin and identity of song system neurons born during vocal learning in songbirds.
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Developmental origin and identity of song system neurons born during vocal learning in songbirds.

机译:在鸣禽的声音学习过程中出生的歌曲系统神经元的发育起源和身份。

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New neurons are added to the forebrain song control regions high vocal center (HVC) and Area X of juvenile songbirds but the identity and site of origin of these cells have not been fully characterized. We used oncoretroviral vectors to genetically label neuronal progenitors in different regions of the zebra finch lateral ventricle. A region corresponding to the mammalian medial and lateral ganglionic eminences generated medium spiny neurons found in Area X and in the striatum surrounding Area X, and at least two classes of interneurons found in HVC. In addition, our experiments indicate that the HVC projection neurons that project into nucleus robust nucleus of the arcopallium (RA) are born locally from the ventricular region immediately dorsal to HVC. The ability to genetically target neuron subpopulations that give rise to different song system cell types provides a tool for specific genetic manipulations of these cell types. In addition, our results suggest striking similarities between neurogenesis in the embryonic mammalian brain and in the brain of the juvenile songbird and provide further evidence for the existence of conserved cell types in the forebrain for birds and mammals.
机译:新的神经元被添加到幼鸟的前脑歌控制区高声中枢(HVC)和X区域,但这些细胞的身份和起源部位尚未完全表征。我们使用核转录病毒载体对斑马雀雀侧脑室不同区域的神经元祖细胞进行遗传标记。对应于哺乳动物内侧和外侧神经节隆起的区域产生了在区域X和区域X周围的纹状体中发现的中等棘神经元,以及在HVC中发现的至少两类中间神经元。此外,我们的实验表明,投射到arcopallium(RA)的核健壮核中的HVC投射神经元是从HVC背侧的心室区域局部出生的。遗传靶向导致不同歌曲系统细胞类型的神经元亚群的能力为这些细胞类型的特定遗传操作提供了一种工具。此外,我们的结果表明,胚胎哺乳动物大脑和幼鸟大脑中神经发生之间的惊人相似之处,并为鸟类和哺乳动物的前脑中存在保守的细胞类型提供了进一步的证据。

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