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听觉神经纤维反应的现象学模型。II. 频率滑动下的非线性调谐。

A phenomenological model for the responses of auditory-nerve fibers. II. Nonlinear tuning with a frequency glide.

作者信息

Tan Qing, Carney Laurel H

机构信息

Boston University Hearing Research Center, Department of Biomedical Engineering, Boston University, 44 Cummington Street, Boston, Massachusetts 02215, USA.

出版信息

J Acoust Soc Am. 2003 Oct;114(4 Pt 1):2007-20. doi: 10.1121/1.1608963.

Abstract

A computational model was developed to simulate the responses of auditory-nerve (AN) fibers in cat. The model's signal path consisted of a time-varying bandpass filter; the bandwidth and gain of the signal path were controlled by a nonlinear feed-forward control path. This model produced realistic response features to several stimuli, including pure tones, two-tone combinations, wideband noise, and clicks. Instantaneous frequency glides in the reverse-correlation (revcor) function of the model's response to broadband noise were achieved by carefully restricting the locations of the poles and zeros of the bandpass filter. The pole locations were continuously varied as a function of time by the control signal to change the gain and bandwidth of the signal path, but the instantaneous frequency profile in the revcor function was independent of sound pressure level, consistent with physiological data. In addition, this model has other important properties, such as nonlinear compression, two-tone suppression, and reasonable Q10 values for tuning curves. The incorporation of both the level-independent frequency glide and the level-dependent compressive nonlinearity into a phenomenological model for the AN was the primary focus of this work. The ability of this model to process arbitrary sound inputs makes it a useful tool for studying peripheral auditory processing.

摘要

开发了一种计算模型来模拟猫的听神经(AN)纤维的反应。该模型的信号路径由一个时变带通滤波器组成;信号路径的带宽和增益由一个非线性前馈控制路径控制。该模型对几种刺激产生了逼真的反应特征,包括纯音、双音组合、宽带噪声和滴答声。通过仔细限制带通滤波器的极点和零点位置,在模型对宽带噪声的反应的互相关(revcor)函数中实现了瞬时频率滑动。极点位置由控制信号作为时间的函数连续变化,以改变信号路径的增益和带宽,但revcor函数中的瞬时频率分布与声压级无关,这与生理数据一致。此外,该模型还有其他重要特性,如非线性压缩、双音抑制以及调谐曲线的合理Q10值。将与声压级无关的频率滑动和与声压级相关的压缩非线性纳入到一个用于听神经的唯象模型中是这项工作的主要重点。该模型处理任意声音输入的能力使其成为研究外周听觉处理的有用工具。

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