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首页> 外文期刊>The Journal of the Acoustical Society of America >A model for binaural response properties of inferior colliculus neurons. II. A model with interaural time difference sensitive excitatory and inhibitory inputs and an adaptation mechanism
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A model for binaural response properties of inferior colliculus neurons. II. A model with interaural time difference sensitive excitatory and inhibitory inputs and an adaptation mechanism

机译:下丘神经元双耳反应特性的模型。二。具有听觉时差敏感的兴奋性和抑制性输入的模型和适应机制

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摘要

The inferior colliculus (IC) model of Cai et al. [J. Acoust. Soc. Am. 103, 475-493 (1998)] simulated the binaural response properties of low-frequency IC neurons in response to various acoustic stimuli. This model, however, failed to simulate the sensitivities of IC neurons to dynamically changing temporal features, such as the sharpened dynamic interaural phase difference (IPD) functions. In this paper, the Cai et al. (1998) model is modified such that an adaptation mechanism, viz., an additional channel simulating a calcium-activated, voltage-independent potassium channel which is responsible for afterhyperpolarization, is incorporated in the IC membrane model. Simulations were repeated with this modified model, including the responses to pure tones, binaural beat stimuli, interaural phase-modulated stimuli, binaural clicks, and pairs of binaural clicks. The discharge patterns of the model in response to current injection were also studied and compared with physiological data. It was demonstrated that this model showed all the properties that were simulated by the Cai et al. (1998) model. In addition, it showed some properties that were not simulated by that model, such as the sharpened dynamic IPD functions and adapting discharge patterns in response to current injection.
机译:Cai等人的下丘(IC)模型。 [J. co Soc。上午。 103,475-493(1998)]模拟了低频IC神经元对各种声刺激的双耳反应特性。但是,该模型无法模拟IC神经元对动态变化的时间特征(如尖锐的动态听觉相位差(IPD)功能)的敏感性。在本文中,蔡等。 (1998)模型被修改,使得适应机制,即模拟钙激活的,电压无关的钾通道的额外通道,该通道负责超极化后,被整合到IC膜模型中。使用此修改后的模型重复进行仿真,包括对纯音,双耳节拍刺激,耳间相位调制刺激,双耳点击和双耳点击对的响应。还研究了响应电流注入的模型放电模式,并将其与生理数据进行了比较。结果表明,该模型显示了Cai等人模拟的所有属性。 (1998)模型。此外,它还显示了该模型未模拟的一些特性,例如增强的动态IPD功能和响应电流注入而适应放电模式。

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