Kimberley B P, Nelson D A
Department of Otolaryngology, University of Minnesota, Minneapolis.
J Otolaryngol. 1989 Dec;18(7):365-9.
Distortion product emissions (DPEs) are intimately linked to normal outer hair cell function. Outer hair cell function is itself intimately linked with normal auditory thresholds. We sought to correlate frequency-specific DPE measurements with auditory thresholds, in seven frequency regions from 700 Hz to 6 kHz, in each of 21 ears. Eleven of these ears had thresholds below 25 dB SPL at every test frequency, whereas 10 ears demonstrated some degree of purely sensorineural hearing loss. An analysis of the correlation between DPE measurements and sensory thresholds suggests that DPE measures can predict frequency-specific auditory thresholds to within 10 dB over a range of sensory thresholds from 0 dB SPL to 60 dB SPL. Distortion product emissions promise to provide an objective, non-invasive measure of sensory thresholds. The clinical value of DPE measurement is enhanced by that fact that it is brief and requires minimal subject participation. A clinical test based on the DPE measurement will not displace conventional audiometry or auditory brain stem response measurement. It promises to provide new information about cochlear function to both the clinician and auditory physiologist.
畸变产物发射(DPEs)与正常的外毛细胞功能密切相关。外毛细胞功能本身又与正常的听阈密切相关。我们试图在21只耳朵的每只耳朵中,将700赫兹至6千赫的七个频率区域内特定频率的DPE测量值与听阈进行关联。其中11只耳朵在每个测试频率下的听阈均低于25分贝声压级,而10只耳朵表现出一定程度的纯感音神经性听力损失。对DPE测量值与感觉阈之间相关性的分析表明,在从0分贝声压级到60分贝声压级的感觉阈范围内,DPE测量值能够将特定频率的听阈预测在10分贝以内。畸变产物发射有望提供一种客观、非侵入性的感觉阈测量方法。DPE测量的临床价值因其测量过程简短且受试者参与度极低而得到提升。基于DPE测量的临床测试不会取代传统的听力测定法或听觉脑干反应测量。它有望为临床医生和听觉生理学家提供有关耳蜗功能的新信息。