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Midbrain local circuits shape sound intensity codes

机译:中脑局部电路塑造声音强度代码

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摘要

Hierarchical processing of sensory information requires interaction at multiple levels along the peripheral to central pathway. Recent evidence suggests that interaction between driving and modulating components can shape both top down and bottom up processing of sensory information. Here we show that a component inherited from extrinsic sources combines with local components to code sound intensity. By applying high concentrations of divalent cations to neurons in the nucleus of the inferior colliculus in the auditory midbrain, we show that as sound intensity increases, the source of synaptic efficacy changes from inherited inputs to local circuits. In neurons with a wide dynamic range response to intensity, inherited inputs increase firing rates at low sound intensities but saturate at mid-to-high intensities. Local circuits activate at high sound intensities and widen dynamic range by continuously increasing their output gain with intensity. Inherited inputs are necessary and sufficient to evoke tuned responses, however local circuits change peak output. Push–pull driving inhibition and excitation create net excitatory drive to intensity-variant neurons and tune neurons to intensity. Our results reveal that dynamic range and tuning re-emerge in the auditory midbrain through local circuits that are themselves variable or tuned.
机译:感官信息的分层处理需要沿外围路径到中央路径的多个级别进行交互。最新证据表明,驱动和调节组件之间的相互作用可以影响自上而下和自下而上的感觉信息处理。在这里,我们显示了从外部来源继承来的分量与本地分量相结合以编码声音强度。通过将高浓度的二价阳离子应用于听觉中脑下丘神经核中的神经元,我们表明,随着声音强度的增加,突触功效的来源将从遗传输入变为局部回路。在对强度具有宽动态范围的神经元中,继承的输入在低声音强度下会提高发声速率,但在中高强度下会饱和。本地电路通过不断增加其输出增益随强度而在高声音强度下激活并扩大动态范围。继承的输入对于引起调谐响应是必要且足够的,但是本地电路会更改峰值输出。推挽驱动抑制和激发产生净的兴奋性驱动力,以改变强度神经元并使神经元适应强度。我们的结果表明,动态范围和调音通过本身可变或调节的局部电路重新出现在听觉中脑中。

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