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New Developments in Understanding the Mechanisms and Function of Spontaneous Electrical Activity in the Developing Mammalian Auditory System

机译:在发展中的哺乳动物听觉系统中了解自发性电活动的机制和功能的新进展

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摘要

In the mature mammalian auditory system, inner hair cells are responsible for converting sound-evoked vibrations into graded electrical responses, resulting in release of neurotransmitter and neuronal transmission via the VIIIth cranial nerve to auditory centres in the central nervous system. Before the cochlea can reliably respond to sound, inner hair cells are not merely immature quiescent pre-hearing cells, but instead are capable of generating ‘spontaneous’ calcium-based action potentials. The resulting calcium signal promotes transmitter release that drives action potential firing in developing spiral ganglion neurones. These early signalling events that occur before sound-evoked activity are thought to be important in guiding and refining the initial phases of development of the auditory circuits. This review will summarise our current knowledge of the mechanisms that underlie spontaneous action potentials in developing inner hair cells and how these events are triggered and regulated.
机译:在成熟的哺乳动物听觉系统中,内部毛细胞负责将声诱发的振动转换为分级的电响应,从而导致神经递质的释放和神经元经由第八颅神经传递到中枢神经系统的听觉中枢。在耳蜗能够可靠地响应声音之前,内部毛细胞不仅是未成熟的静止预听力细胞,而且还能产生基于钙的“自发性”动作电位。所产生的钙信号促进递质释放,从而驱动发育中的螺旋神经节神经元激发动作电位。这些在发声活动之前发生的早期信号事件被认为对引导和完善听觉回路发育的初始阶段很重要。这篇综述将总结我们目前对形成内部毛细胞中自发动作电位的机制的知识,以及如何触发和调节这些事件。

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