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Interaural level difference-dependent gain control and synaptic scaling underlying binaural computation

机译:双耳计算基础上的取决于听觉水平差异的增益控制和突触缩放

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摘要

Binaural integration in the central nucleus of inferior colliculus (ICC) plays a critical role in sound localization. However, its arithmetic nature and underlying synaptic mechanisms remain unclear. Here, we showed in mouse ICC neurons that the contralateral dominance is created by a "push-pull"-like mechanism, with contralaterally dominant excitation and more bilaterally balanced inhibition. Importantly, binaural spiking response is generated apparently from an ipsilaterally mediated scaling of contralateral response, leaving frequency tuning unchanged. This scaling effect is attributed to a divisive attenuation ofcontralaterally evoked synaptic excitation onto ICC neurons with their inhibition largely unaffected. Thus, a gain control mediates the linear transformation from monaural to binaural spike responses. The gain value is modulated by interaural level difference (ILD) primarily through scaling excitation to different levels. The ILD-dependent synaptic scaling and gain adjustment allow ICC neurons to dynamically encode interaural sound localization cues while maintaining an invariant representation of other independent sound attributes.
机译:下丘中央核(ICC)中的双耳积分在声音定位中起关键作用。但是,其算术性质和潜在的突触机制仍不清楚。在这里,我们在小鼠ICC神经元中显示,对侧优势是由“推挽”式机制产生的,具有对侧显性激发和更双边平衡的抑制作用。重要的是,双耳尖峰响应显然是由同侧对侧响应的缩放产生的,而频率调谐保持不变。这种缩放作用归因于对侧诱发的突触兴奋在ICC神经元上的分裂衰减,其抑制作用很大程度上不受影响。因此,增益控制介导了从单声道到双声道尖峰响应的线性转换。增益值主要通过将激励缩放到不同的电平来通过耳间电平差(ILD)进行调制。依赖ILD的突触缩放和增益调节使ICC神经元可以动态编码耳间声音定位提示,同时保持其他独立声音属性的不变表示。

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