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A mechanism for simultaneous suppression of tone burst-evoked otoacoustic emissions

机译:同时抑制音调诱发的耳声发射的机制

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Tone burst-evoked otoacoustic emission (TBOAE) components in response to a 1 kHz tone burst are suppressed by the simultaneous presence of tone bursts at higher frequencies. To date, the underlying cause of this " simultaneous suppression" of TBOAEs is unclear. This paper describes a potential mechanism based on local nonlinear interactions between basilar membrane (BM) travelling waves, and tests the extent to which it is able to account for this specific suppression phenomenon. A simple mathematical model based on local nonlinear interactions was developed, and its predictions for a range of tone burst pairs were compared to corresponding TBOAE suppression data recorded from fourteen normally hearing human ears at a level of 60 dB p.e. SPL. Model predictions and mean TBOAE suppression data showed close agreement for all pairs of tone bursts. These results suggest that simultaneous suppression of TBOAEs can be explained solely in terms of the local nonlinear interaction-based mechanism. However, the involvement of other mechanisms, involving components generated at places basal to their characteristic place along the BM, cannot be excluded.
机译:响应于1 kHz音频脉冲的音频脉冲诱发的耳声发射(TBOAE)分量被较高频率的音频脉冲同时存在所抑制。迄今为止,尚不清楚这种“同时抑制” TBOAE的根本原因。本文介绍了基于基底膜(BM)行波之间的局部非线性相互作用的潜在机制,并测试了该机制能够解释这种特定抑制现象的程度。建立了一个基于局部非线性相互作用的简单数学模型,并将其对一系列音调猝发对的预测与从14个正常听觉人耳以60 dB p.e的水平记录的相应TBOAE抑制数据进行了比较。 SPL。模型预测和平均TBOAE抑制数据显示,所有成对的音调猝发都非常接近。这些结果表明,TBOAE的同时抑制只能用基于局部非线性相互作用的机制来解释。但是,不能排除其他机制的参与,这些机制涉及在其沿BM的特征位置基础的位置生成的组件。

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