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Descending Axonal Projections from the Inferior Colliculus Target Nearly All Excitatory and Inhibitory Cell Types of the Dorsal Cochlear Nucleus

机译:来自下丘的下行轴突投射靶向耳蜗背核的几乎所有兴奋性和抑制性细胞类型

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The dorsal cochlear nucleus (DCN) integrates auditory nerve input with nonauditory sensory signals and is proposed to function in sound source localization and suppression of self-generated sounds. The DCN also integrates activity from descending auditory pathways, including a particularly large feedback projection from the inferior colliculus (IC), the main ascending target of the DCN. Understanding how these descending feedback signals are integrated into the DCN circuit and what role they play in hearing requires knowing the targeted DCN cell types and their postsynaptic responses. In order to explore these questions, neurons in the DCN that received descending synaptic input from the IC were labeled with a trans-synaptic viral approach in male and female mice, which allowed them to be targeted for whole-cell recording in acute brain slices. We tested their synaptic responses to optogenetic activation of the descending IC projection. Every cell type in the granule cell domain received monosynaptic, glutamatergic input from the IC, indicating that this region, considered an integrator of nonauditory sensory inputs, processes auditory input as well and may have complex and underappreciated roles in hearing. Additionally, we found that DCN cell types outside the granule cell regions also receive descending IC signals, including the principal projection neurons, as well as the neurons that inhibit them, leading to a circuit that may sharpen tuning through feedback excitation and lateral inhibition.
机译:耳蜗背核 (DCN) 将听觉神经输入与非听觉感觉信号相结合,并被认为在声源定位和抑制自生声音中发挥作用。DCN 还整合了来自下行听觉通路的活动,包括来自下丘 (IC) 的特别大的反馈投射,这是 DCN 的主要上升目标。了解这些下降反馈信号如何整合到 DCN 电路中以及它们在听力中发挥什么作用需要了解目标 DCN 细胞类型及其突触后反应。为了探索这些问题,在雄性和雌性小鼠中用跨突触病毒方法标记了DCN中接收来自IC的下行突触输入的神经元,这使它们能够成为急性脑切片中全细胞记录的目标。我们测试了它们对降行 IC 投射的光遗传学激活的突触反应。颗粒细胞结构域中的每种细胞类型都接收来自 IC 的单突触、谷氨酸能输入,这表明该区域被认为是非听觉感觉输入的整合者,也处理听觉输入,并且可能在听觉中具有复杂且被低估的作用。此外,我们发现颗粒细胞区域外的DCN细胞类型也接收下行的IC信号,包括主要的投射神经元,以及抑制它们的神经元,导致一个可能通过反馈激发和横向抑制来锐化调谐的电路。

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