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非人灵长类动物对调制噪声中调制音调的检测

Detection of modulated tones in modulated noise by non-human primates.

作者信息

Bohlen Peter, Dylla Margit, Timms Courtney, Ramachandran Ramnarayan

机构信息

Department of Hearing and Speech Sciences, Vanderbilt University School of Medicine, Nashville, TN, 37232, USA,

出版信息

J Assoc Res Otolaryngol. 2014 Oct;15(5):801-21. doi: 10.1007/s10162-014-0467-7. Epub 2014 Jun 5.

Abstract

In natural environments, many sounds are amplitude-modulated. Amplitude modulation is thought to be a signal that aids auditory object formation. A previous study of the detection of signals in noise found that when tones or noise were amplitude-modulated, the noise was a less effective masker, and detection thresholds for tones in noise were lowered. These results suggest that the detection of modulated signals in modulated noise would be enhanced. This paper describes the results of experiments investigating how detection is modified when both signal and noise were amplitude-modulated. Two monkeys (Macaca mulatta) were trained to detect amplitude-modulated tones in continuous, amplitude-modulated broadband noise. When the phase difference of otherwise similarly amplitude-modulated tones and noise were varied, detection thresholds were highest when the modulations were in phase and lowest when the modulations were anti-phase. When the depth of the modulation of tones or noise was varied, detection thresholds decreased if the modulations were anti-phase. When the modulations were in phase, increasing the depth of tone modulation caused an increase in tone detection thresholds, but increasing depth of noise modulations did not affect tone detection thresholds. Changing the modulation frequency of tone or noise caused changes in threshold that saturated at modulation frequencies higher than 20 Hz; thresholds decreased when the tone and noise modulations were in phase and decreased when they were anti-phase. The relationship between reaction times and tone level were not modified by manipulations to the nature of temporal variations in the signal or noise. The changes in behavioral threshold were consistent with a model where the brain subtracted noise from signal. These results suggest that the parameters of the modulation of signals and maskers heavily influence detection in very predictable ways. These results are consistent with some results in humans and avians and form the baseline for neurophysiological studies of mechanisms of detection in noise.

摘要

在自然环境中,许多声音都是调幅的。调幅被认为是一种有助于听觉对象形成的信号。先前一项关于噪声中信号检测的研究发现,当音调或噪声进行调幅时,噪声作为掩蔽声的效果会减弱,并且噪声中音调的检测阈值会降低。这些结果表明,在调幅噪声中对调幅信号的检测会得到增强。本文描述了一些实验的结果,这些实验研究了信号和噪声都进行调幅时检测是如何被改变的。两只猕猴(恒河猴)经过训练,以在连续的、调幅的宽带噪声中检测调幅音调。当其他方面类似调幅的音调和噪声的相位差变化时,当调制同相时检测阈值最高,而当调制反相时检测阈值最低。当音调或噪声的调制深度变化时,如果调制反相,检测阈值会降低。当调制同相时,增加音调调制深度会导致音调检测阈值升高,但增加噪声调制深度不会影响音调检测阈值。改变音调或噪声的调制频率会导致阈值变化,在高于20Hz的调制频率下阈值变化趋于饱和;当音调和噪声调制同相时阈值降低,当它们反相时阈值也降低。信号或噪声中时间变化性质的操作并未改变反应时间与音调水平之间的关系。行为阈值的变化与大脑从信号中减去噪声的模型一致。这些结果表明,信号和掩蔽声调制的参数以非常可预测的方式严重影响检测。这些结果与人类和鸟类的一些结果一致,并为噪声中检测机制的神经生理学研究奠定了基础。

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本文引用的文献

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