首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Large-scale reorganization of the tonotopic map in mouse auditory midbrain revealed by MRI
【24h】

Large-scale reorganization of the tonotopic map in mouse auditory midbrain revealed by MRI

机译:MRI揭示的小鼠听觉中脑中的断层摄影图的大规模重组

获取原文
获取原文并翻译 | 示例
           

摘要

The cortex is thought to be the primary site of sensory plasticity, particularly during development. Here, we report that large-scale reorganization of the mouse auditory midbrain tonotopic map is induced by a specific sound-rearing environment consisting of paired low- (16 kHz) and high-frequency (40 kHz) tones. To determine the potential for plasticity in the mouse auditory midbrain, we used manganese-enhanced MRI to analyze the midbrain tonotopic maps of control mice during normal development and mice reared in the two-tone (16 + 40 kHz) environment. We found that the tonotopic map emerged during the third postnatal week in normal mice. Before 3 weeks, a larger percentage of auditory midbrain responded to each of the suprathreshold test frequencies, despite the fact that the primary afferent projections are in place even before hearing onset. By 3 weeks, the midbrain tonotopic map of control mice was established, and manganese-enhanced MRI showed a clear separation between the 16- and 40-kHz responses. Two-tone rearing dramatically altered the appearance of these discrete frequency-specific responses. A significant volume of the auditory midbrain became responsive to both rearing frequencies, resulting in a large-scale reorganization of the tonotopic map. These results indicate that developmental plasticity occurs on a much greater scale than previously appreciated in the mammalian auditory midbrain.
机译:皮质被认为是感觉可塑性的主要部位,特别是在发育过程中。在这里,我们报告说,由一对成对的低频(16 kHz)和高频(40 kHz)音调组成的特定发声环境引起了小鼠听觉中脑tonotopic地图的大规模重组。为了确定小鼠听觉中脑的可塑性潜力,我们使用了锰增强的MRI分析了正常发育和在两音(16 + 40 kHz)环境下饲养的小鼠的中脑对映图。我们发现正常小鼠在出生后第三周出现了异位图。在3周之前,尽管实际上在听觉发作之前就已经有主要的传入投射,但仍有较大比例的听觉中脑对每个阈上测试频率做出反应。到3周时,建立了对照小鼠的中脑断层图,并且锰增强MRI显示了16 kHz和40 kHz反应之间的清晰分离。两音调饲养极大地改变了这些离散的频率特定响应的外观。大量的听觉中脑对两种饲养频率都做出了反应,从而导致了色调局部图的大规模重组。这些结果表明,发育可塑性比以前在哺乳动物的听觉中脑中发现的更大。

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