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使用畸变产物耳声发射估计往返外中耳增益

Estimation of Round-Trip Outer-Middle Ear Gain Using DPOAEs.

作者信息

Naghibolhosseini Maryam, Long Glenis R

机构信息

Communicative Sciences and Disorders, Michigan State University, 1026 Red Cedar Road, East Lansing, MI, 48824, USA.

Speech-Language-Hearing Sciences, The Graduate Center of the City University of New York, 365 Fifth Avenue, New York, NY, 10016, USA.

出版信息

J Assoc Res Otolaryngol. 2017 Feb;18(1):121-138. doi: 10.1007/s10162-016-0592-6. Epub 2016 Oct 28.

Abstract

The reported research introduces a noninvasive approach to estimate round-trip outer-middle ear pressure gain using distortion product otoacoustic emissions (DPOAEs). Our ability to hear depends primarily on sound waves traveling through the outer and middle ear toward the inner ear. The role of the outer and middle ear in sound transmission is particularly important for otoacoustic emissions (OAEs), which are sound signals generated in a healthy cochlea and recorded by a sensitive microphone placed in the ear canal. OAEs are used to evaluate the health and function of the cochlea; however, they are also affected by outer and middle ear characteristics. To better assess cochlear health using OAEs, it is critical to quantify the effect of the outer and middle ear on sound transmission. DPOAEs were obtained in two conditions: (i) two-tone and (ii) three-tone. In the two-tone condition, DPOAEs were generated by presenting two primary tones in the ear canal. In the three-tone condition, DPOAEs at the same frequencies (as in the two-tone condition) were generated by the interaction of the lower frequency primary tone in the two-tone condition with a distortion product generated by the interaction of two other external tones. Considering how the primary tones and DPOAEs of the aforementioned conditions were affected by the forward and reverse outer-middle ear transmission, an estimate of the round-trip outer-middle ear pressure gain was obtained. The round-trip outer-middle ear gain estimates ranged from -39 to -17 dB between 1 and 3.3 kHz.

摘要

所报道的研究介绍了一种使用畸变产物耳声发射(DPOAE)来估计往返外中耳压力增益的非侵入性方法。我们的听力主要取决于声波通过外耳和中耳传向内耳。外耳和中耳在声音传播中的作用对于耳声发射(OAE)尤为重要,耳声发射是在健康耳蜗中产生并由置于耳道内的灵敏麦克风记录的声音信号。OAE用于评估耳蜗的健康状况和功能;然而,它们也会受到外耳和中耳特征的影响。为了使用OAE更好地评估耳蜗健康,量化外耳和中耳对声音传播的影响至关重要。在两种条件下获得了DPOAE:(i)双音和(ii)三音。在双音条件下,通过在耳道中呈现两个原音来产生DPOAE。在三音条件下,相同频率的DPOAE(如在双音条件下)是由双音条件下的低频原音与另外两个外部音相互作用产生的畸变产物相互作用产生的。考虑到上述条件下的原音和DPOAE如何受到外中耳正向和反向传输的影响,获得了往返外中耳压力增益的估计值。往返外中耳增益估计值在1至3.3kHz之间为-39至-17dB。

相似文献

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Estimation of Round-Trip Outer-Middle Ear Gain Using DPOAEs.使用畸变产物耳声发射估计往返外中耳增益
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