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前掩蔽效应对猫的声音定位的影响:宽带掩蔽器的基本发现。

Effects of forward masking on sound localization in cats: basic findings with broadband maskers.

机构信息

Department of Neuroscience, University of Wisconsin, Madison, Wisconsin.

出版信息

J Neurophysiol. 2013 Oct;110(7):1600-10. doi: 10.1152/jn.00255.2013. Epub 2013 Jul 10.

Abstract

Forward masking is traditionally measured with a detection task in which the addition of a preceding masking sound results in an increased signal-detection threshold. Little is known about the influence of forward masking on localization of free-field sound for human or animal subjects. Here we recorded gaze shifts of two head-unrestrained cats during localization using a search-coil technique. A broadband (BB) noise masker was presented straight ahead. A brief signal could come from 1 of the 17 speaker locations in the frontal hemifield. The signal was either a BB or a band-limited (BL) noise. For BB targets, the presence of the forward masker reduced localization accuracy at almost all target levels (20 to 80 dB SPL) along both horizontal and vertical dimensions. Temporal decay of masking was observed when a 15-ms interstimulus gap was added between the end of the masker and the beginning of the target. A large effect of forward masking was also observed for BL targets with low (0.2-2 kHz) and mid (2-7 kHz) frequencies, indicating that the interaural timing cue is susceptible to forward masking. Except at low sound levels, a small or little effect was observed for high-frequency (7-15 kHz) targets, indicating that the interaural level and the spectral cues in that frequency range remained relatively robust. Our findings suggest that different localization mechanisms can operate independently in a complex listening environment.

摘要

前向掩蔽传统上是通过检测任务来测量的,即在添加前置掩蔽音后,信号检测阈值会增加。对于人类或动物主体,前向掩蔽对自由场声音定位的影响知之甚少。在这里,我们使用搜索线圈技术记录了两只未束缚头部的猫在定位过程中的眼球运动。宽带(BB)噪声掩蔽器直接呈现在前方。短暂的信号可以来自前半球场的 17 个扬声器位置之一。信号要么是 BB 噪声,要么是带限(BL)噪声。对于 BB 目标,前向掩蔽器的存在降低了几乎所有目标水平(20 至 80 dB SPL)的定位精度,无论是在水平还是垂直方向上。当在掩蔽器结束和目标开始之间添加 15 毫秒的刺激间隔时,观察到掩蔽的时间衰减。对于低(0.2-2 kHz)和中频(2-7 kHz)频率的 BL 目标,也观察到前向掩蔽的大影响,这表明双耳时间线索易受前向掩蔽的影响。除了在低音量水平下,高频(7-15 kHz)目标的影响较小或几乎没有,这表明在该频率范围内的双耳水平和频谱线索仍然相对稳健。我们的发现表明,在复杂的聆听环境中,不同的定位机制可以独立运作。

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