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Masking of sounds by a background noise – cochlear mechanical correlates

机译:背景噪音掩盖声音–耳蜗机械相关

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摘要

In the search for cochlear correlates of auditory masking by noise stimuli, we recorded basilar membrane (BM) vibrations evoked by either tone or click signals in the presence of varying levels of background noise. The BM vibrations were recorded from basal regions in healthy cochleae of anaesthetized chinchilla and gerbil. Non-linear interactions that could underpin various aspects of psychophysical masking data, including both compression and suppression at the BM level, were observed. The suppression effects, whereby the amplitude of the responses to each stimulus component could be reduced, depended on the relative intensities of the noise and the tones or clicks. Only stimulus components whose frequencies fell inside the non-linear region of the recording site, i.e. around its characteristic frequency (CF), were affected by presentation of the ‘suppressing’ stimulus (which could be either the tone or the noise). Mutual suppression, the simultaneous reduction of the responses to both tones and noise components, was observed under some conditions, but overall reductions of BM vibration were rarely observed. Moderate- to high-intensity tones suppressed BM responses to low-intensity Gaussian stimuli, including both broadband and narrowband noise. Suppression effects were larger for spectral components of the noise response that were closer to the CF. In this regime, the tone and noise stimuli became the suppressor and probe signals, respectively. This study provides the first detailed observations of cochlear mechanical correlates of the masking effects of noise. Mechanical detection thresholds for tone signals, which were arbitrarily defined using three criteria, are shown to increase in almost direct proportion to the noise level for low and moderately high noise levels, in a manner that resembles the findings of numerous psychophysical observations.
机译:在寻找由噪声刺激引起的听觉掩盖的耳蜗相关性时,我们记录了在背景噪声水平不同的情况下,由基调或点击信号引起的基底膜(BM)振动。在麻醉的黄鼠和沙鼠的健康耳蜗的基底区域记录BM振动。观察到可以支撑心理物理掩盖数据各个方面的非线性交互,包括在BM水平的压缩和抑制。抑制效果取决于对噪声和音调或咔嗒声的相对强度,从而可以减小对每个刺激分量的响应幅度。只有其频率落在录制位置非线性区域内(即其特征频率(CF)附近)的刺激成分才会受到“抑制”刺激(可能是音调或噪音)的影响。在某些条件下,可以观察到相互抑制,即同时降低了对音调和噪声分量的响应,但很少观察到整体振动的降低。中高强度的音调抑制了BM对低强度高斯刺激(包括宽带噪声和窄带噪声)的响应。对于更接近CF的噪声响应的频谱分量,抑制效果更大。在这种情况下,音调和噪声刺激分别成为抑制器和探测信号。这项研究提供了对噪音掩蔽效应的耳蜗机械相关性的首次详细观察。音频信号的机械检测阈值(使用三个标准任意定义)显示出与低水平和中高水平噪声水平的噪声水平几乎成正比的增加,其方式类似于许多心理物理观察的发现。

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