Modeling amplitude-modulated (AM) tone encoding behavior of cochlear nucleus neurons

S. Ghoshal, D.O. Kim, R. Northrop
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引用次数: 5

Abstract

An attempt was made to understand the mechanisms underlying the response of the cochlear nucleus (CN) neurons, specifically the choppers, to the AM tone. The AM tone excitation via the auditory nerve fibers was modeled as a combination of DC, AC, and a zero-mean Gaussian noise current at the soma of the model neuron. The DC represents the high frequency carrier beyond the neuron's phase-locking limit and the AC represents the envelope. With a systematic variation of DC, AC, and noise amplitudes, the stellate cell models could reproduce the low-pass and band-pass modulation transfer functions (MTFs) and intrinsic oscillations (IOs). A close correlation was observed between the IO frequency and the best envelope frequency in the stellate cell models.<>
模拟耳蜗核神经元调幅(AM)音调编码行为
我们试图了解耳蜗核(CN)神经元(特别是切波神经元)对调幅音调的反应机制。通过听觉神经纤维的调幅音调激发被建模为直流、交流和模型神经元体上零均值高斯噪声电流的组合。直流表示超过神经元锁相极限的高频载波,交流表示包络。随着直流、交流和噪声幅值的系统变化,星状单元模型可以再现低通和带通调制传递函数(MTFs)和固有振荡(IOs)。在星状细胞模型中,观察到IO频率与最佳包络频率之间存在密切的相关性。
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