Latencies of the 2f1-f2 distortion product otoacoustic emissions measured using a phase-gradient method in young people, in the elderly and in people exposed to noise

G. Namysłowski, K. Morawski, P. Urbaniec, G. Trybalska, G. Lisowska
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引用次数: 10

Abstract

Distortion product otoacoustic emissions (DPOAE) are generally accepted as a good tool for investigating the micromechanics of the cochlea. The 2f1-f2 DPOAE latencies provide significant data regarding travelling waves. In this study the 2f1-f2 DPOAE latencies were measured using a phase-gradient method, with a swept-f2 procedure, for three groups: Group I comprised 60 healthy young people, aged 17-32 years; Group II comprised elderly patients, aged 56-72 years, with presbyacusis; and Group III consisted of 74 miners, aged 19-35 years, who had been exposed to noise for 2-15 years. Measurements were performed for frequencies between 1.0 and 6.0 kHz. In all groups the latencies were fitted using a non-linear regression model. The aim of the study was to compare the latency and amplitude of 2f1-f2 DPOAE in different inner ear pathologies. The highest DPOAE amplitudes were recorded in Group I and in miners with 2-4 years noise exposure (Group IIIa), and the latencies showed a similar pattern. The lowest DPOAE amplitudes were recorded in the elderly and in miners with 8-15 years noise exposure (Group IIIc), but in contrast the longest latencies were measured in miners and the shortest in the elderly. The latency analysis significantly reinforces opinions on the micromechanics of the cochlea, mostly in terms of the cochlear functioning as a filter and amplifier and with regard to the elasticity of the basilar membrane.
使用相位梯度法测量年轻人、老年人和暴露于噪声中的人的2f1-f2失真产品耳声发射的潜伏期
畸变产物耳声发射(DPOAE)是研究耳蜗微观力学的一种良好工具。2f1-f2 DPOAE延迟提供了关于行波的重要数据。在本研究中,采用相位梯度法和扫描-f2程序测量三组的2f1-f2 DPOAE潜伏期:第一组包括60名17-32岁的健康年轻人;II组为老年患者,年龄56-72岁,伴有老年性耳聋;第三组74名矿工,年龄19-35岁,噪声暴露时间2-15年。测量频率在1.0和6.0 kHz之间。所有组的潜伏期均采用非线性回归模型拟合。本研究的目的是比较不同内耳病理下2f1-f2 DPOAE的潜伏期和振幅。第一组和2-4年噪声暴露的矿工(IIIa组)的DPOAE振幅最高,并且潜伏期显示类似的模式。最低的DPOAE振幅记录在老年人和8-15年噪音暴露的矿工(IIIc组)中,但相比之下,矿工的潜伏期最长,老年人最短。潜伏期分析显著强化了耳蜗微观力学的观点,主要是关于耳蜗作为过滤器和放大器的功能,以及关于基底膜的弹性。
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