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Negative-delay sources in distortion product otoacoustic emissions

机译:畸变产物耳声发射中的负延迟源

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摘要

Long-delay components showing a symmetrical pattern with positive and negative delays can be observed in the time-frequency representation (or in the inverse Fourier transform) of distortion product otoacoustic emissions. Positive-only phase-gradient delays are predicted by place-fixed backscattering mechanisms, such as coherent reflection due to roughness, whereas the nonlinear distortion wave-fixed mechanism should generate an almost null-delay component. The symmetrical delay pattern arises whenever spectral amplitude fluctuations are not fully correlated to phase fluctuations. An interpretation of this phenomenon is proposed, involving place-fixed modulation of the spectral strength of the wave–fixed nonlinear generator.Experimental data are shown in which these negative-delay sources are particularly strong, and further amplified by contralateral stimulation, suggesting that this effect could be dynamically enhanced. Analytical solutions of a linear 1-d transmission line model, in which cubic nonlinearity and roughness were added as small perturbations, have been used to test this hypothesis.
机译:可以在失真产物耳声发射的时频表示中(或在傅立叶逆变换中)观察到显示具有正延迟和负延迟的对称模式的长延迟分量。仅正相位梯度延迟是通过固定位置的反向散射机制(例如由于粗糙度引起的相干反射)预测的,而非线性失真固定频率机制应生成几乎为零的延迟分量。每当频谱幅度波动与相位波动不完全相关时,就会出现对称延迟模式。提出了对此现象的一种解释,其中涉及对固波非线性发生器频谱强度的位置固定调制。实验数据表明,这些负延迟源特别强,并通过对侧刺激进一步放大,这表明效果可以动态增强。线性1-d传输线模型的解析解决方案已用于检验此假设,在该模型中,立方非线性和粗糙度作为小扰动被添加。

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