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Homeostatic Control of Spontaneous Activity in the Developing Auditory System

机译:发展听觉系统中自发活动的稳态控制

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摘要

Neurons in the developing auditory system exhibit spontaneous bursts of activity before hearing onset. How this intrinsically generated activity influences development remains uncertain, because few mechanistic studies have been performedin?vivo. We show using macroscopic calcium imaging in unanesthetized mice that neurons responsible for processing similar frequencies of sound exhibit highly synchronized activity throughout the auditory system during this critical phase of development. Spontaneous activity normally requires synaptic excitation of spiral ganglion neurons (SGNs). Unexpectedly, tonotopic spontaneous activity was preserved in a mouse model of deafness in which glutamate release from hair cells is abolished. SGNs in these mice exhibited enhanced excitability, enabling direct neuronal excitation by supporting cell-induced potassium transients. These results indicate that homeostatic mechanisms maintain spontaneous activity in the pre-hearing period, with significant implications for both circuit development and therapeutic approaches aimed at treating congenital forms of deafness arising through mutations in key sensory transduction components.
机译:在开发后系统中的神经元在听力发作前表现出自发的活动爆发。这种本质上产生的活动如何影响发展仍然不确定,因为很少有机械研究已经进行了?体内。我们展示在未经抑制的小鼠中使用宏观钙成像,该小鼠中的神经元在这种临界发展期间在整个听觉系统中表现出高度同步的活动。自发活动通常需要螺旋神经节神经元(SGNS)的突触激发。出乎意料地,在耳聋的小鼠模型中保存了能量自发活性,其中废除了从毛细胞释放的谷氨酸释放。这些小鼠中的SGN具有增强的兴奋性,通过支持细胞诱导的钾瞬变来实现直接神经元激发。这些结果表明,稳态机制在听力前保持自发性活性,对旨在治疗通过关键感官转导组分中突变产生的先天性耳聋的电路开发和治疗方法的显着影响。

著录项

  • 来源
    《Neuron》 |2018年第3期|共14页
  • 作者单位

    The Solomon Snyder Department of Neuroscience Johns Hopkins University;

    The Solomon Snyder Department of Neuroscience Johns Hopkins University;

    Department of Neurobiology Yale University School of Medicine;

    The Solomon Snyder Department of Neuroscience Johns Hopkins University;

    Department of Biomedical Engineering Johns Hopkins University;

    The Solomon Snyder Department of Neuroscience Johns Hopkins University;

    Department of Neurobiology Yale University School of Medicine;

    The Solomon Snyder Department of Neuroscience Johns Hopkins University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

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