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基于对侧抑制的双耳处理模型。II. 对频谱参数的依赖性。

Binaural processing model based on contralateral inhibition. II. Dependence on spectral parameters.

作者信息

Breebaart J, van de Par S, Kohlrausch A

机构信息

IPO, Center for User-System Interaction, Eindhoven, The Netherlands.

出版信息

J Acoust Soc Am. 2001 Aug;110(2):1089-104. doi: 10.1121/1.1383298.

Abstract

This and two accompanying articles [Breebaart et al., J. Acoust. Soc. Am. 110, 1074-1088 (2001); 110, 1105-1117 (2001)] describe a computational model for the signal processing in the binaural auditory system. The model consists of several stages of monaural and binaural preprocessing combined with an optimal detector. In the present article the model is tested and validated by comparing its predictions with experimental data for binaural discrimination and masking conditions as a function of the spectral parameters of both masker and signal. For this purpose, the model is used as an artificial observer in a three-interval, forced-choice adaptive procedure. All model parameters were kept constant for all simulations described in this and the subsequent article. The effects of the following experimental parameters were investigated: center frequency of both masker and target, bandwidth of masker and target, the interaural phase relations of masker and target, and the level of the masker. Several phenomena that occur in binaural listening conditions can be accounted for. These include the wider effective binaural critical bandwidth observed in band-widening NoS(pi) conditions, the different masker-level dependence of binaural detection thresholds for narrow- and for wide-band maskers, the unification of IID and ITD sensitivity with binaural detection data, and the dependence of binaural thresholds on frequency.

摘要

这篇文章以及另外两篇相关文章[Breebaart等人,《美国声学学会杂志》110, 1074 - 1088 (2001); 110, 1105 - 1117 (2001)]描述了一种用于双耳听觉系统信号处理的计算模型。该模型由几个单耳和双耳预处理阶段与一个最优检测器组成。在本文中,通过将其预测结果与双耳辨别和掩蔽条件下的实验数据进行比较,作为掩蔽器和信号频谱参数的函数,对该模型进行了测试和验证。为此,该模型在一个三区间、强制选择自适应程序中被用作人工观察者。在本文及后续文章中描述的所有模拟中,所有模型参数均保持不变。研究了以下实验参数的影响:掩蔽器和目标的中心频率、掩蔽器和目标的带宽、掩蔽器和目标的双耳相位关系以及掩蔽器的电平。双耳聆听条件下出现的几种现象可以得到解释。这些现象包括在带宽扩展的NoS(π)条件下观察到的更宽的有效双耳临界带宽、窄带和宽带掩蔽器的双耳检测阈值对掩蔽器电平的不同依赖性、双耳检测数据中强度差(IID)和时间差(ITD)敏感性的统一以及双耳阈值对频率的依赖性。

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