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首页> 外文期刊>The Journal of the Acoustical Society of America >Distortion product otoacoustic emission (DPOAE) input/output functions and the influence of the second DPOAE source
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Distortion product otoacoustic emission (DPOAE) input/output functions and the influence of the second DPOAE source

机译:失真产物耳声发射(DPOAE)输入/输出功能以及第二个DPOAE源的影响

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摘要

Distortion product otoacoustic emissions (DPOAEs) at 2f(1) - f(2) (f(2)/f(1) = 1.2) have two components from different cochlear sources, i.e., a distortion component generated near f2 and a reflection component from the characteristic site of f(DP). The interaction of the two sources may negatively affect the DPOAE input/output (I/O) functions that are used to predict either auditory thresholds or the compression characteristics of the basilar membrane. This study investigates the influence of the reflection component on DPOAE I/O functions in a frequency range for f(2) from 1500 to 4500 Hz in steps of 18 Hz. A time windowing procedure is used to separate the components from the two DPOAE sources. With decreasing stimulus level, the relative contribution of the reflection component increases. I/O functions from the separated distortion component (DCOAE I/O functions) only show smooth changes in shape and slope with frequency, while "standard" DPOAE I/O functions show rapid changes between adjacent frequencies, indicating a strong influence from the interference with the second DPOAE source. A reduced variability for adjacent frequencies can be seen as well for prediction of hearing thresholds, when using DCOAE instead of DPOAE I/O functions. (C) 2004 Acoustical Society of America.
机译:在2f(1)-f(2)(f(2)/ f(1)= 1.2)下的失真产物耳声发射(DPOAE)具有两个来自不同耳蜗源的分量,即,在f2附近产生的失真分量和反射分量来自f(DP)的特征位点。两种来源的相互作用可能会对DPOAE输入/输出(I / O)功能产生负面影响,该功能用于预测听觉阈值或基底膜的压缩特性。这项研究调查了f(2)从1500到4500 Hz的频率范围内,反射分量对DPOAE I / O功能的影响,步长为18 Hz。时间开窗程序用于将组件与两个DPOAE源分开。随着刺激水平的降低,反射分量的相对贡献增加。来自分离的失真分量的I / O功能(DCOAE I / O功能)仅显示形状和斜率随频率的平滑变化,而“标准” DPOAE I / O功能显示相邻频率之间的快速变化,表明受干扰的影响很大与第二个DPOAE源。当使用DCOAE代替DPOAE I / O功能时,也可以看到相邻频率的可变性降低,从而可以预测听力阈值。 (C)2004年美国声学学会。

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