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Improving the Dynamics of Responses to Amplitude Modulated Stimuli by Modeling Inhibitory Interneurons in Cochlear Nucleus

机译:通过在耳蜗核中建模的抑制性抑制性中间核来改善对振幅调节刺激的响应的动态

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Amplitude modulation is an important feature of communication sounds. A phenomenological model of the auditory pathway that reproduces amplitude modulation coding from the outer ear to the inferior colliculus is presented. It is based on Hewitt and Meddis'' work. To improve the temporal coding for high level stimuli, high spontaneous rate and low spontaneous rate auditory nerve fibers innervate chopper cells of the cochlear nucleus. Wideband inhibitory interneurons which limit high spontaneous rate fibers connected to chopper units are added in this nucleus. The realistic structure we propose gives results closer to physiological data in terms of synchronization.
机译:幅度调制是通信声音的重要特征。呈现了从外耳上再现从外耳到劣芯的幅度调制的听觉途径的现象学模型。它基于休伊特和Meddis的工作。为了改善高级刺激,高自发性率和低自发率听觉神经纤维的时间编码,耳蜗核的斩肉细胞。在该细胞核中添加限制高自发速率纤维的宽带抑制性纤维。我们提出的现实结构在同步方面给出了更接近生理数据的结果。

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