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Noise Reduction of Coincidence Detector Output by the Inferior Colliculus of the Barn Owl

机译:谷仓猫头鹰的下眼睑减少巧合检测器输出的噪声

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摘要

A recurring theme in theoretical work is that integration over populations of similarly tuned neurons can reduce neural noise. However, there are relatively few demonstrations of an explicit noise reduction mechanism in a neural network. Here we demonstrate that the brainstem of the barn owl includes a stage of processing apparently devoted to increasing the signal-to-noise ratio in the encoding of the interaural time difference (ITD), one of two primary binaural cues used to compute the position of a sound source in space. In the barn owl, the ITD is processed in a dedicated neural pathway that terminates at the core of the inferior colliculus (ICcc). The actual locus of the computation of the ITD is before ICcc in the nucleus laminaris (NL), and ICcc receives no inputs carrying information that did not originate in NL. Unlike in NL, the rate-ITD functions of ICcc neurons require as little as a single stimulus presentation per ITD to show coherent ITD tuning. ICcc neurons also displayed a greater dynamic range with a maximal difference in ITD response rates approximately double that seen in NL. These results indicate that ICcc neurons perform a computation functionally analogous to averaging across a population of similarly tuned NL neurons.
机译:理论工作中反复出现的一个主题是,在经过类似调整的神经元群体中进行整合可以减少神经噪声。但是,关于神经网络中显式降噪机制的演示很少。在这里,我们证明了仓的脑干包括一个处理阶段,该阶段显然致力于增加听觉时差(ITD)的编码中的信噪比,这是两个主要的双耳线索之一,用于计算耳蜗的位置。空间中的声源。在the中,ITD在专用神经通路中进行处理,该通路终止于下丘脑(ICcc)的核心。 ITD的实际计算位置位于层状核(NL)中的ICcc之前,并且ICcc不会收到任何携带不是源自NL的信息的输入。与NL不同,ICcc神经元的rate-ITD功能每个ITD只需一个刺激提示即可显示出一致的ITD调整。 ICcc神经元还显示出更大的动态范围,ITD响应率的最大差异约为NL中的两倍。这些结果表明,ICcc神经元的计算功能类似于对相似调谐的NL神经元进行平均计算。

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