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Auditory Input to CNS Is Acquired Coincidentally with Development of Inner Ear after Formation of Functional Afferent Pathway in Zebrafish

机译:斑马鱼功能传入通路形成后内耳的发育恰巧获得了中枢神经系统的听觉输入。

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摘要

Auditory perception in vertebrates depends on transduction of sound into neural signals in the inner ear hair cells (HCs) and on transmission of these signals to the brain through auditory (VIIIth) nerve afferents. To investigate the developmental acquisition of auditory inputs by the CNS, we have electrophysiologically and morphologically examined the process of acquisition of auditory responsiveness by zebrafish macular HCs and the Mauthner cells (M-cells) in vivo. The M-cells are a paired large reticulospinal neurons in the hindbrain; they receive direct inputs from the VIIIth nerve afferents and initiate an acoustic startle response. Whole-cell recordings from the M-cells showed that sound-evoked postsynaptic currents were first observed around 40 h postfertilization (hpf); during subsequent development, onset latency decreased and amplitude increased. The appearance and development of microphonic potentials in the inner ear coincided with those of the acoustic responses of the M-cell, whereas the functional auditory circuits from the macular HCs to the M-cell were already formed at 27 hpf. These results suggest that the functional maturation of inner ear after formation of the auditory pathway is a critical process in the acquisition of auditory inputs by CNS neurons.
机译:脊椎动物的听觉感知取决于将声音转换为内耳毛细胞(HCs)中的神经信号,以及将这些信号通过听觉(VIIIth)神经传入神经传递到大脑。为了研究中枢神经系统对听觉输入的发育性获取,我们在体内通过电生理学和形态学检查了斑马鱼黄斑HC和Mauthner细胞(M细胞)对听觉响应性的获取过程。 M细胞是后脑中的一对大的网状脊髓神经元。它们从第VIII个神经传入神经接收直接输入,并启动听觉惊吓反应。 M细胞的全细胞记录表明,在受精后约40 h(hpf)首次观察到了诱发声音的突触后电流。在随后的发育过程中,发病潜伏期减少,振幅增加。内耳中微音电位的出现和发展与M细胞的声音响应相一致,而从黄斑HC到M细胞的功能性听觉回路已经在27 hpf形成。这些结果表明,听觉通道形成后内耳的功能成熟是中枢神经系统神经元获取听觉输入的关键过程。

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