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采用耳蜗位置特异性刺激优化正常听力耳的失真产物耳声发射记录。

Optimizing distortion product otoacoustic emission recordings in normal-hearing ears by adopting cochlear place-specific stimuli.

机构信息

Roxelyn and Richard Pepper Department of Communication Science and Disorders, Northwestern University, Evanston, Illinois 60208, USA.

Department of Communication Science and Disorders, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

J Acoust Soc Am. 2022 Aug;152(2):776. doi: 10.1121/10.0013218.

Abstract

Distortion product otoacoustic emissions (DPOAEs) provide a window into active cochlear processes and have become a popular clinical and research tool. DPOAEs are commonly recorded using stimulus with fixed presentation levels and frequency ratio irrespective of the test frequency. However, this is inconsistent with the changing mechanical properties of the cochlear partition from the base to the apex that lend specific frequency-dependent spatial properties to the cochlear traveling wave. Therefore, the frequency and level characteristics between the stimulus tones should also need to be adjusted as a function of frequency to maintain optimal interaction between them. The goal of this investigation was to establish a frequency-specific measurement protocol guided by local cochlear mechanics. A broad stimulus parameter space extending up to 20 kHz was explored in a group of normal-hearing individuals. The stimulus frequency ratio yielding the largest 2f-f DPOAE level changed as a function of frequency and stimulus level. Specifically, for a constant stimulus level, the frequency ratio producing the largest DPOAE level decreased with increasing frequency. Similarly, at a given f frequency, the stimulus frequency ratio producing the largest DPOAE level became wider as stimulus level increased. These results confirm and strengthen our current understanding of DPOAE generation in the normally functioning cochlea and expand our understanding to previously unexamined higher frequencies. These data support the use of frequency- and level-specific stimulus frequency ratios to maximize DPOAE generation.

摘要

畸变产物耳声发射(DPOAEs)提供了一个研究耳蜗主动过程的窗口,已成为一种流行的临床和研究工具。DPOAEs 通常使用固定呈现水平和频率比的刺激进行记录,而不考虑测试频率。然而,这与从基底到顶点的耳蜗分隔壁的机械特性变化不一致,这些特性为耳蜗行波赋予了特定的频率依赖性空间特性。因此,刺激音之间的频率和水平特性也需要根据频率进行调整,以保持它们之间的最佳相互作用。本研究的目的是建立一个由局部耳蜗力学指导的特定频率的测量方案。在一组正常听力个体中,探索了一个广泛的刺激参数空间,扩展到 20 kHz。产生最大 2f-f DPOAE 水平的刺激频率比随频率和刺激水平而变化。具体来说,对于恒定的刺激水平,产生最大 DPOAE 水平的频率比随频率的增加而减小。同样,在给定的 f 频率下,产生最大 DPOAE 水平的刺激频率比随着刺激水平的增加而变宽。这些结果证实并加强了我们对正常功能耳蜗中 DPOAE 产生的现有理解,并将我们的理解扩展到以前未检查的更高频率。这些数据支持使用特定频率和特定水平的刺激频率比来最大限度地产生 DPOAE。

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