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A neural-counting model based on physiological characteristics of the peripheral auditory system. IV. Application to response of individual neural fibers

机译:基于外围听觉系统生理特征的神经计数模型。 IV。在个别神经纤维反应中的应用

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摘要

An energy-based neural-counting model, incorporating refractoriness and spread of excitation, has recently been applied to intensity discrimination and loudness estimation for a variety of acoustic stimuli. In this model, refractoriness was the sole means of achieving the saturation effect of the afferent fiber's response. Though refractoriness (or an effect like it) should be included in a proper Poisson-based model to produce a neural count variance less than the count mean (in accordance with experiment), there is a strong additional saturation effect associated with the response of the receptor. This earlier model is now extended to incorporate the effects of receptor saturation and spontaneous neural activity. In this paper the behavior of individual neural channels is investigated. Theoretical firing-rate curves are obtained as a function of stimulus level and frequency (isointensity contours). These are found to be in good agreement with neurophysiological data. It is shown that it is possible to fit human psychophysical tuning curves with a double-tuned linear filter, by judicious choice of the tuning parameter Q.
机译:基于能量的神经计数模型,结合了耐火性和激发的扩散,最近已被用于各种声刺激的强度鉴别和响度估计。在此模型中,耐火度是达到传入光纤响应饱和效果的唯一方法。尽管应在适当的基于Poisson的模型中包括耐火度(或类似的影响),以产生小于计数平均值的神经计数方差(根据实验),但存在与响应相关的强烈的额外饱和效果受体。现在,该早期模型已扩展为包含受体饱和度和自发神经活动的影响。本文研究了单个神经通道的行为。根据激励水平和频率(等强度线)获得理论点火速率曲线。发现这些与神经生理学数据非常吻合。结果表明,通过明智地选择调整参数Q,可以使用双调谐线性滤波器拟合人的心理生理调整曲线。

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