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Distortion-product otoacoustic emission reflection-component delays and cochlear tuning: Estimates from across the human lifespan

机译:失真 - 产物耳声发射反射 - 分量延迟和耳蜗调谐:来自人类寿命的估计

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摘要

A consistent relationship between reflection-emission delay and cochlear tuning has been demonstrated in a variety of mammalian species, as predicted by filter theory and models of otoacoustic emission (OAE) generation. As a step toward the goal of studying cochlear tuning throughout the human lifespan, this paper exploits the relationship and explores two strategies for estimating delay trends—energy weighting and peak picking—both of which emphasize data at the peaks of the magnitude fine structure. Distortion product otoacoustic emissions (DPOAEs) at 2f1f2 were recorded, and their reflection components were extracted in 184 subjects ranging in age from prematurely born neonates to elderly adults. DPOAEs were measured from 0.5–4 kHz in all age groups and extended to 8 kHz in young adults. Delay trends were effectively estimated using either energy weighting or peak picking, with the former method yielding slightly shorter delays and the latter somewhat smaller confidence intervals. Delay and tuning estimates from young adults roughly match those obtained from SFOAEs. Although the match is imperfect, reflection-component delays showed the expected bend (apical-basal transition) near 1 kHz, consistent with a break in cochlear scaling. Consistent with other measures of tuning, the term newborn group showed the longest delays and sharpest tuning over much of the frequency range.
机译:如滤波器理论和耳声发射(OAE)生成模型所预测的,在多种哺乳动物中,反射-发射延迟与耳蜗调谐之间存在着一致的关系。为了朝着研究整个人类寿命中的耳蜗调谐的目标迈进,本文探索了这种关系,并探索了两种估计延迟趋势的策略-能量加权和峰值拾取-两者都强调了幅度精细结构的峰值处的数据。记录了2f1f2处的失真产物耳声发射(DPOAE),并从年龄范围从早产新生儿到老年人的184位受试者中提取了它们的反射成分。在所有年龄组中,DPOAE的测量范围为0.5–4 kHz,在年轻人中,DPOAE的测量范围扩展至8 kHz。使用能量加权或峰值选取可以有效地估计延迟趋势,前一种方法产生的延迟略短,而置信区间则较小。年轻人的延迟和调整估计与从SFOAE获得的估计大致相同。尽管匹配并不完美,但反射分量的延迟显示出预期的弯曲(顶基过渡)接近1 kHz,与耳蜗缩放的中断一致。与其他调音方法一致,新生儿组一词在大部分频率范围内显示出最长的延迟和最锐利的调音。

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