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瞬态诱发耳声发射输入/输出函数与耳蜗反射率:实验与模型

Transient evoked otoacoustic emission input/output function and cochlear reflectivity: experiment and model.

作者信息

Sisto Renata, Moleti Arturo

机构信息

Dipartimento Igiene del Lavoro, ISPESL, Via Fontana Candida, 1, 00040 Monte Porzio Catone (Roma), Italy.

出版信息

J Acoust Soc Am. 2008 Nov;124(5):2995-3008. doi: 10.1121/1.2990711.

Abstract

The complex input/output function of transient evoked otoacoustic emissions is evaluated at different stimulus levels. The experimental response functions were best fitted to the reflectivity functions predicted by theoretical one-dimensional transmission-line models in the perturbative limit. Along with the otoacoustic emission sources usually considered, linear reflection from roughness (place-fixed) and nonlinear distortion (wave-fixed), a wave-fixed scattering potential is also considered, associated with the breaking of the scale-invariance symmetry, as a new additional mechanism for otoacoustic emission generation. A good fit was obtained, across stimulus level and frequency, for roughness, and not for nonlinear distortion, nor for scale-invariance violation. The phase-gradient delay of the same transient evoked otoacoustic emissions was consistent with the latency measured using a wavelet time-frequency technique, at all stimulus levels and frequencies. The results suggest that cochlear reflectivity is dominated by a component with a rapidly rotating phase, at all stimulus levels, in apparent contradiction with the usual assumption that, at high stimulus levels, a significant contribution to the transient evoked otoacoustic response should come from nonlinear distortion. Possible interpretations of this phenomenology are critically reviewed and discussed, considering the theoretical uncertainties and the limitations of the experimental technique.

摘要

在不同刺激水平下评估瞬态诱发耳声发射的复杂输入/输出功能。实验响应函数在微扰极限下与理论一维传输线模型预测的反射率函数拟合得最好。除了通常考虑的耳声发射源,即粗糙度(位置固定)的线性反射和非线性失真(波固定)外,还考虑了与尺度不变性对称性破缺相关的波固定散射势,作为耳声发射产生的一种新的附加机制。在整个刺激水平和频率范围内,粗糙度拟合良好,而非线性失真和尺度不变性违反则不然。在所有刺激水平和频率下,相同瞬态诱发耳声发射的相位梯度延迟与使用小波时频技术测量的潜伏期一致。结果表明,在所有刺激水平下,耳蜗反射率由具有快速旋转相位的成分主导,这与通常的假设明显矛盾,即在高刺激水平下,瞬态诱发耳声响应的显著贡献应来自非线性失真。考虑到理论不确定性和实验技术的局限性,对这种现象学的可能解释进行了批判性审查和讨论。

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