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Functional Refinement in the Projection from Ventral Cochlear Nucleus to Lateral Superior Olive Precedes Hearing Onset in Rat

机译:从腹侧耳蜗核到侧上级橄榄先驱物在大鼠中的发作中投射的功能细化。

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摘要

Principal neurons of the lateral superior olive (LSO) compute the interaural intensity differences necessary for localizing high-frequency sounds. To perform this computation, the LSO requires precisely tuned, converging excitatory and inhibitory inputs that are driven by the two ears and that are matched for stimulus frequency. In rodents, the inhibitory inputs, which arise from the medial nucleus of the trapezoid body (MNTB), undergo extensive functional refinement during the first postnatal week. Similar functional refinement of the ascending excitatory pathway, which arises in the anteroventral cochlear nucleus (AVCN), has been assumed but has not been well studied. Using whole-cell voltage clamp in acute brainstem slices of neonatal rats, we examined developmental changes in input strength and pre- and post-synaptic properties of the VCN-LSO pathway. A key question was whether functional refinement in one of the two major input pathways might precede and then guide refinement in the opposite pathway. We find that elimination and strengthening of VCN inputs to the LSO occurs over a similar period to that seen for the ascending inhibitory (MNTB-LSO) pathway. During this period, the fractional contribution provided by NMDA receptors (NMDARs) declines while the contribution from AMPA receptors (AMPARs) increases. In the NMDAR-mediated response, GluN2B-containing NMDARs predominate in the first postnatal week and decline sharply thereafter. Finally, the progressive decrease in paired-pulse depression between birth and hearing onset allows these synapses to follow progressively higher frequencies. Our data are consistent with a model in which the excitatory and inhibitory projections to LSO are functionally refined in parallel during the first postnatal week, and they further suggest that GluN2B-containing NMDARs may mediate early refinement in the VCN-LSO pathway.
机译:上外侧橄榄(LSO)的主要神经元计算定位高频声音所需的耳间强度差异。为了执行此计算,LSO需要精确调整,融合的激励性和抑制性输入,该输入由两只耳朵驱动,并与刺激频率匹配。在啮齿动物中,源自梯形体内侧核(MNTB)的抑制性输入在出生后的第一周内会进行广泛的功能改善。假定在前腹蜗神经核(AVCN)中出现了类似的上升兴奋途径功能完善,但尚未进行充分研究。使用全细胞电压钳在新生大鼠的急性脑干切片中,我们检查了输入强度以及VCN-LSO通路的突触前后特性的发育变化。一个关键问题是,是否可以先在两个主要输入途径之一中进行功能改进,然后在相反的途径中进行指导。我们发现,消除和加强LSO的VCN输入发生在与上升抑制(MNTB-LSO)途径相似的时期。在此期间,由NMDA受体(NMDAR)提供的部分贡献下降,而来自AMPA受体(AMPAR)的贡献增加。在NMDAR介导的反应中,含GluN2B的NMDAR在产后第一周占主导地位,此后急剧下降。最后,在出生和听力发作之间成对脉冲压抑的逐渐降低使这些突触遵循更高的频率。我们的数据与一个模型相吻合,在模型中,对LSO的兴奋性和抑制性预测在出生后的第一个星期内在功能上平行完善,并且它们进一步表明,含GluN2B的NMDAR可能介导了VCN-LSO途径的早期完善。

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