首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The role of auditory experience in the formation of neural circuits underlying vocal learning in zebra finches.
【24h】

The role of auditory experience in the formation of neural circuits underlying vocal learning in zebra finches.

机译:听觉经验在斑马雀科声乐学习基础的神经回路形成中的作用。

获取原文
获取原文并翻译 | 示例
       

摘要

The initial establishment of topographic mapping within developing neural circuits is thought to be shaped by innate mechanisms and is primarily independent of experience. Additional refinement within topographic maps leads to precise matching between presynaptic and postsynaptic neurons and is thought to depend on experiential factors during specific sensitive periods in the animal's development. In male zebra finches, axonal projections of the cortical lateral magnocellular nucleus of the anterior neostriatum (lMAN) are critically important for vocal learning. Overall patterns of topographic organization in the majority of these circuits are adult-like throughout the sensitive period for vocal learning and remain stable despite large-scale functional and morphological changes. However, topographic organization within the projection from the core subregion of lMAN (lMAN(core)) to the motor cortical robust nucleus of the archistriatum (RA) is lacking at the onset of song development and emerges during the early stages of vocal learning. To study the effects of song-related experience on patterns of axonal connectivity within different song-control circuits, we disrupted song learning by deafening juvenile zebra finches or exposing them to loud white noise throughout the sensitive period for song learning. Depriving juvenile birds of normal auditory experience delayed the emergence of topographic specificity within the lMAN(core)-->RA circuit relative to age-matched controls, whereas topographic organization within all other projections to and from lMAN was not affected. The projection from lMAN(core) to RA therefore provides an unusual example of experience-dependent modification of large-scale patterns of brain circuitry, in the sense that auditory deprivation influences the development of overall topographic organization in this pathway.
机译:发育中的神经回路内地形图的最初建立被认为是由先天机制决定的,并且主要独立于经验。地形图内的其他改进可导致突触前和突触后神经元之间的精确匹配,并且被认为取决于动物发育中特定敏感时期的经验因素。在雄性斑马雀科中,新纹状体前皮质外侧核细胞核(lMAN)的轴突投影对于声音学习至关重要。在大部分声带学习过程中,这些电路中大多数电路的地形组织总体格局都像成年人,尽管功能和形态发生了大规模变化,但仍保持稳定。但是,从lMAN核心子区域(lMAN(core))到原核运动(RA)的运动皮层健壮核的投影中的地形组织在歌曲发展初期就缺乏,并且在声乐学习的早期出现。为了研究歌曲相关体验对不同歌曲控制电路中轴突连接模式的影响,我们通过给幼年斑马雀充耳不闻或在敏感的整个歌曲学习期间暴露于大白噪声中,破坏了歌曲学习。剥夺幼鸟的正常听觉体验相对于年龄匹配的对照,延迟了lMAN(核心)-> RA回路内地形特异性的出现,而往返lMAN的所有其他投影中的地形组织均不受影响。因此,从lMAN(core)到RA的投影提供了一个不寻常的示例,即依赖于经验的大脑电路大规模模式的修改,就这一点而言,听觉剥夺会影响整个地形组织的发展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号