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The origin of spontaneous activity in the developing auditory system

机译:不断发展的听觉系统中自发活动的起源

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Spontaneous activity in the developing auditory system is required for neuronal survival as well as the refinement and maintenance of tonotopic maps in the brain. However, the mechanisms responsible for initiating auditory nerve firing in the absence of sound have not been determined. Here we show that supporting cells in the developing rat cochlea spontaneously release ATP, which causes nearby inner hair cells to depolarize and release glutamate, triggering discrete bursts of action potentials in primary auditory neurons. This endogenous, ATP-mediated signalling synchronizes the output of neighbouring inner hair cells, which may help refine tonotopic maps in the brain. Spontaneous ATP-dependent signalling rapidly subsides after the onset of hearing, thereby preventing this experience-independent activity from interfering with accurate encoding of sound. These data indicate that supporting cells in the organ of Corti initiate electrical activity in auditory nerves before hearing, pointing to an essential role for peripheral, non-sensory cells in the development of central auditory pathways.
机译:发育中的听觉系统中的自发活动是神经元生存以及大脑中色调分布图的完善和维持所必需的。但是,尚未确定引起不发出声音的听觉神经激发的机制。在这里,我们显示发育中的大鼠耳蜗中的支持细胞自发释放ATP,这会导致附近的内部毛细胞去极化并释放谷氨酸,从而触发初级听觉神经元中动作电位的离散爆发。这种内源性,ATP介导的信号传导使邻近的内部毛细胞的输出同步,这可能有助于完善大脑中的色调图。自发性ATP依赖性信号在听力发作后迅速消退,从而防止这种与经验无关的活动干扰声音的准确编码。这些数据表明,Corti器官中的支持细胞在听觉之前会先启动听觉神经的电活动,这表明外周非感觉细胞在中枢听觉通路的发展中起着至关重要的作用。

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