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对整体水平和频谱形状变化的敏感度:一种信道模型的评估

Sensitivity to changes in overall level and spectral shape: an evaluation of a channel model.

作者信息

Lentz J J, Richards V M

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

J Acoust Soc Am. 1997 Jun;101(6):3625-35. doi: 10.1121/1.418323.

Abstract

Two experiments involving level and spectral shape discrimination which test an optimal channel model developed by Durlach et al. [J. Acoust. Soc Am. 80, 63-72 (1986)] are described. The model specifies how the auditory system compares and/or combines intensity information in different frequency channels. In the first experiment, psychometric functions were obtained for the discrimination of changes in level and discrimination of changes in spectral shape for an eight-tone complex sound. A variety of different base spectral shapes were tested. In some conditions, level randomization was introduced to reduce the reliability of across-interval changes in level. Increasing the amount of level variation degraded performance for the level discrimination task but had no effect on the shape discrimination task. In all conditions, sensitivity to changes in spectral shape was superior to sensitivity to changes in level. Consequently, two models of central noise are evaluated in an attempt to explain these results; one in which central noise acts prior to the formation of the likelihood ratio and one in which central noise degrades the likelihood ratio. The former model is more successful in accounting for the data. In a second experiment, the detectability of a level increment to one component of a multitone complex was measured. The frequency content of the complex was varied by systematically removing six components from a 23-component complex. Thresholds were measured for increments at three different signal frequencies. A common trend in the data was that when there was a spectral gap directly above the signal frequency, thresholds were lowest. This result differs from the predictions of a simple channel model, and contrasts with results presented by Green and Berg [Q. J. Exp. Psychol. 43A, 449-458 (1991)].

摘要

本文描述了两项实验,它们涉及电平与频谱形状辨别,用于检验由德拉赫等人[《美国声学学会杂志》80, 63 - 72 (1986年)]所开发的最优通道模型。该模型规定了听觉系统如何比较和/或组合不同频率通道中的强度信息。在第一个实验中,获取了八音调复合声音的电平变化辨别和频谱形状变化辨别的心理测量函数。测试了各种不同的基础频谱形状。在某些条件下,引入了电平随机化以降低跨区间电平变化的可靠性。增加电平变化量会降低电平辨别任务的性能,但对形状辨别任务没有影响。在所有条件下,对频谱形状变化的敏感度都高于对电平变化的敏感度。因此,对两种中枢噪声模型进行了评估,试图解释这些结果;一种模型中,中枢噪声在似然比形成之前起作用,另一种模型中,中枢噪声会降低似然比。前一种模型在解释数据方面更为成功。在第二个实验中,测量了多音调复合音的一个分量上电平增量的可探测性。通过从一个23分量的复合音中系统地去除六个分量来改变复合音的频率成分。测量了三个不同信号频率下增量的阈值。数据中的一个共同趋势是,当信号频率正上方存在频谱间隙时,阈值最低。这一结果与简单通道模型的预测不同,并且与格林和伯格[《实验心理学季刊》43A, 449 - 458 (1991年)]所呈现的结果形成对比。

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