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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Development of topography within song control circuitry of zebra finches during the sensitive period for song learning.
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Development of topography within song control circuitry of zebra finches during the sensitive period for song learning.

机译:在歌曲学习的敏感时期,斑马雀的歌曲控制电路内部的地形发展。

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摘要

Refinement of topographic maps during sensitive periods of development is a characteristic feature of diverse sensory and motor circuits in the nervous system. Within the neural system that controls vocal learning and behavior in zebra finches, axonal connections of the cortical nucleus lMAN demonstrate striking functional and morphological changes during vocal development in juvenile males. These circuits are uniquely important for song production during the sensitive period for vocal learning, and the overall size of these brain regions and their patterns of axonal connectivity undergo dramatic growth and regression during this time. Axonal connections to and from lMAN are topographically organized in adult males that have already learned song. We wondered whether the large-scale changes seen in lMAN circuitry during the time that vocal behavior is being learned and refined could be accompanied by the emergence of topographic mapping. However, results presented herein demonstrate that most of these song-control circuits show the same broad patterns of axonal connectivity between subregions of individual nuclei at the onset of song learning as seen in adult birds. Thus, coarse topographic organization is not dependent on the types of experience that are crucial for vocal learning. Furthermore, this maintenance of topographic organization throughout the period of song learning is clearly not achieved by maintenance of static axonal arbors. In fact, because the volumes of song-control nuclei are growing (or regressing), topography must be maintained by active remodeling of axonal arbors to adapt to the changes in overall size of postsynaptic targets. A salient exception to this pattern of conserved topography is the projection from lMAN to the motor cortical region RA: this pathway is diffusely organized at the onset of song learning but undergoes substantial refinement during early stages of song learning, suggesting that remodeling of axonal connections within this projection during the period of vocal learning may signify the production of increasingly refined vocal utterances.
机译:在敏感的发育时期,地形图的细化是神经系统中各种感觉和运动回路的特征。在控制斑马雀科动物的声音学习和行为的神经系统中,皮层核lMAN的轴突连接在少年男性的声音发育过程中显示出惊人的功能和形态变化。这些电路对于在声乐学习敏感时期的歌曲制作至关重要,并且在此期间,这些大脑区域的整体大小及其轴突连接方式会急剧增长和消退。来往lMAN的轴突连接是按地形学组织的,这些成年男性已经学过歌曲。我们想知道,在学习和完善声音行为的过程中,在lMAN电路中看到的大规模变化是否可能伴随着地形图的出现。但是,本文呈现的结果表明,大多数成年歌曲控制电路在成年歌曲学习开始时,在单个核子区域之间显示出相同的广泛的轴突连通性模式,如成年鸟所见。因此,粗略的地形组织并不取决于对语音学习至关重要的经验类型。此外,在整个歌曲学习期间这种地形组织的维护显然不能通过维护静态轴突乔木来实现。实际上,由于歌曲控制核的数量在增加(或消退),因此必须通过主动重塑轴突轴突来维持地形,以适应突触后靶标的总体大小变化。这种保守的地形模式的一个显着例外是从lMAN到运动皮层区域RA的投影:该路径在歌曲学习开始时分散地组织,但是在歌曲学习的早期阶段经历了实质性的细化,表明内部的轴突连接重塑在声乐学习期间的这种预测可能表示产生越来越精致的声调。

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