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Oscillation and its Inhibition In A Neuronal Network Model for Tinnitus Sound Therapy

机译:耳鸣声音疗法神经元网络模型中的振动及其抑制作用

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Tinnitus is the perception of phantom sounds in the ears or in the head. Sound therapy techniques for tinnitus treatment have been proposed. In order to investigate mechanisms of tinnitus generation and the clinical effects of sound therapy from the viewpoint of neural engineering, we have proposed a computational model using a neural oscillator. In the present paper, we propose another model that is composed of model neurons described by simplified Hodgkin-Huxley equations. By computer simulation it was detected that this model also has a bistable state, i.e., a stable oscillatory state and a stable equilibrium (non-oscillatory) state coexist at a certain parameter region. It was also noticed that the oscillation can be inhibited by supplying constant or pulse train stimuli, which is hypothesized as an afferent signal that is employed as an acoustical signal for tinnitus treatment. By hypothesizing that the oscillation and the equilibrium correspond to generation and inhibition of tinnitus, respectively, these phenomena could explain the fact that the habituated human auditory system temporarily halts perception of tinnitus following sound therapy.
机译:耳鸣是耳朵或头部的幻象声音的感知。提出了耳鸣治疗的声音疗法。为了调查耳鸣生成的机制和神经工程的观点来看声疗的临床影响,我们提出了一种使用神经振荡器的计算模型。在本文中,我们提出了另一种模型,该模型由简化的Hodgkin-Huxley方程描述的模型神经元组成。通过计算机模拟,检测到该模型还具有双稳态状态,即稳定的振荡状态和某个参数区域的稳定平衡(非振荡)状态共存。还注意到,通过供应恒定或脉冲列车刺激可以抑制振荡,其假设作为用于耳鸣治疗的声学信号的传入信号。通过假设振荡和均衡分别对应于耳鸣的生成和抑制,这些现象可以解释习惯的人类听觉系统暂时停止对声音疗法后耳鸣感染的事实。

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