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使用畸变产物耳声发射和听觉稳态响应的同时测量来估计听阈。

Hearing threshold estimation using concurrent measurement of distortion product otoacoustic emissions and auditory steady-state responses.

机构信息

Institute for Real-Time Computer Systems, Technische Universität München, Arcisstraße 21, D-80333 Munich, Germany.

出版信息

J Acoust Soc Am. 2011 Feb;129(2):840-51. doi: 10.1121/1.3531934.

Abstract

Both distortion product otoacoustic emissions (DPOAEs) and auditory steady-state responses (ASSRs) provide frequency-specific assessment of hearing. However, each method suffers from some restrictions. Hearing losses above 50 dB HL are not quantifiable using DPOAEs and their performance at frequencies below 1 kHz is limited, but their recording time is short. In contrast, ASSRs are a time-consuming method but have the ability to determine hearing thresholds in a wider range of frequencies and hearing losses. Thus, recording DPOAEs and ASSRs simultaneously at their adequate frequencies and levels could decrease the overall test time considerably. The goal of the present study was to develop a parameter-setting and test-protocol to measure DPOAEs and ASSRs binaurally and simultaneously at multiple frequencies. Ten normal-hearing and 23 hearing-impaired subjects participated in the study. The interaction of both responses when stimulated simultaneously at frequencies between 0.25 and 6 kHz was examined. Two limiting factors need to be kept. Frequency distance between ASSR carrier frequency f(c) and DPOAE primary tone f(2) needs to be at least 1.5 octaves, and DPOAEs may not be measured if the ASSR stimulus level is 70 dB SPL or above. There was a significant correlation between pure-tone and DPOAE/ASSR-thresholds in sensorineural hearing loss ears.

摘要

畸变产物耳声发射(DPOAEs)和听觉稳态反应(ASSRs)均可提供特定频率的听力评估。然而,每种方法都存在一些限制。DPOAEs 无法量化 50dBHL 以上的听力损失,且其在 1kHz 以下的性能受限,但记录时间较短。相比之下,ASSRs 是一种耗时的方法,但具有在更广泛的频率和听力损失范围内确定听力阈值的能力。因此,在适当的频率和水平上同时记录 DPOAEs 和 ASSRs,可以大大缩短整体测试时间。本研究的目的是开发一种参数设置和测试方案,以同时测量双耳在多个频率下的 DPOAEs 和 ASSRs。10 名正常听力和 23 名听力受损受试者参与了研究。研究同时刺激频率在 0.25 至 6kHz 之间的两种反应的相互作用。需要注意两个限制因素。ASSR 载波频率 f(c)和 DPOAE 基频 f(2)之间的频率距离至少需要 1.5 个倍频程,如果 ASSR 刺激水平为 70dB SPL 或更高,则可能无法测量 DPOAEs。在感音神经性听力损失耳朵中,纯音和 DPOAE/ASSR 阈值之间存在显著相关性。

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