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首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Modeling the dependence of the distortion product otoacoustic emission response on primary frequency ratio
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Modeling the dependence of the distortion product otoacoustic emission response on primary frequency ratio

机译:模拟失真产品耳声发射响应对初级频率比的依赖性

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When measured as a function of primary frequency ratio r=f(2)/f(1), using a constant f(2), distortion product otoacoustic emission (DPOAE) response demonstrates a bandpass shape, previously interpreted as the evidence for a cochlear second filter. In this study, an alternate, interference-based explanation, previously advanced in variants, is forwarded on the basis of experimental data along with numerical and analytical solutions of nonlinear and linear cochlear models. The decrease of the DPOAE response with increasing and decreasing ratios is explained by a diminishing overlap generation region and the onset of negative interference among wavelets of different phase, respectively. In this paper, the additional quantitative hypothesis is made that negative interference becomes the dominant effect when the spatial width of the generation (overlap) region exceeds half a wavelength of the DPOAE wavelets. Therefore, r is predicted to be optimal when this condition is matched. Additionally, the minimum on the low-ratio side of the DPOAE curve is predicted to occur as the overlap region width equals one wavelength. As the width of the overlap region depends on both tuning and ratio, while wavelength depends on tuning only, an experimental method for estimating tuning from either the width of the pass band or the optimal ratio of the DPOAE vs. ratio curve has been theoretically formulated and evaluated using numerical simulations. A linear model without the possibility of nonlinear suppression is shown to reasonably approximate data from human subjects at low ratios reinforcing the relevance of the proposed negative interference effect. The different dependence of the distortion and reflection DPOAE components on r as well as the nonmonotonic behavior of the distortion component observed at very low ratios are also in agreement with this interpretation.
机译:当用初级频率比r = f(2)/ f(1)的函数测量时,使用常数f(2),失真产物耳声发射(DPOAE)响应演示了一种带通形状,以前被解释为耳蜗的证据第二个过滤器。在本研究中,基于实验数据的基于实验数据以及非线性和线性耳蜗模型的数值和分析解来转发替代的基于干扰的解释。通过减少重叠产生区域和不同相之间的小波之间的负干扰的发作来解释DPOAE响应的降低和降低的比率。在本文中,当生成(重叠)区域的空间宽度超过DPOAE小波的波长时,额外的定量假设使负干扰成为主的效果。因此,当匹配此条件时,R预计将是最佳的。另外,预测DPOAE曲线的低比侧的最小值,因为重叠区域宽度等于一个波长。由于重叠区域的宽度取决于调谐和比率,而波长仅取决于调谐,则理论上配制了用于从通带的宽度或DPOAE与比率曲线的最佳比率估计调谐的实验方法并使用数值模拟评估。没有非线性抑制可能性的线性模型被证明在低比率下从人体受试者的合理近似数据,增强了所提出的负干扰效果的相关性。变形和反射DPOAE组分对R以及在非常低比率观察到的变形分量的非单调行为的不同依赖性也与这种解释同时。

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