Sisto Renata, Shera Christopher A, Moleti Arturo
Department of Occupational and Environmental Medicine, Epidemiology and Hygiene, INAIL, National Research Centre for Safety and Prevention at Workplace, Monteporzio Catone, Roma, Italy.
Caruso Department of Otolaryngology, Department of Physics and Astronomy, University of Southern California, Los Angeles, CA, USA.
Hear Res. 2018 Mar;360:25-30. doi: 10.1016/j.heares.2017.12.011. Epub 2017 Dec 22.
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.
在畸变产物耳声发射的时频表示(或逆傅里叶变换)中,可以观察到具有正延迟和负延迟的对称模式的长延迟成分。仅正相位梯度延迟由位置固定的反向散射机制预测,例如由于粗糙度引起的相干反射,而非线性畸变波固定机制应产生几乎零延迟成分。只要频谱幅度波动与相位波动不完全相关,就会出现对称延迟模式。本文提出了对这一现象的一种解释,涉及波固定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,这表明这种效应可以动态增强。已使用线性一维传输线模型的解析解来检验这一假设,该模型中添加了立方非线性和粗糙度作为小扰动。