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主动和被动听力保护装置对声源定位、言语识别和音调检测的影响。

Effects of Active and Passive Hearing Protection Devices on Sound Source Localization, Speech Recognition, and Tone Detection.

作者信息

Brown Andrew D, Beemer Brianne T, Greene Nathaniel T, Argo Theodore, Meegan G Douglas, Tollin Daniel J

机构信息

Department of Physiology & Biophysics, University of Colorado School of Medicine, Aurora, Colorado, United States of America.

Department of Speech, Language, and Hearing Sciences, University of Colorado-Boulder, Boulder, Colorado, United States of America.

出版信息

PLoS One. 2015 Aug 27;10(8):e0136568. doi: 10.1371/journal.pone.0136568. eCollection 2015.

Abstract

Hearing protection devices (HPDs) such as earplugs offer to mitigate noise exposure and reduce the incidence of hearing loss among persons frequently exposed to intense sound. However, distortions of spatial acoustic information and reduced audibility of low-intensity sounds caused by many existing HPDs can make their use untenable in high-risk (e.g., military or law enforcement) environments where auditory situational awareness is imperative. Here we assessed (1) sound source localization accuracy using a head-turning paradigm, (2) speech-in-noise recognition using a modified version of the QuickSIN test, and (3) tone detection thresholds using a two-alternative forced-choice task. Subjects were 10 young normal-hearing males. Four different HPDs were tested (two active, two passive), including two new and previously untested devices. Relative to unoccluded (control) performance, all tested HPDs significantly degraded performance across tasks, although one active HPD slightly improved high-frequency tone detection thresholds and did not degrade speech recognition. Behavioral data were examined with respect to head-related transfer functions measured using a binaural manikin with and without tested HPDs in place. Data reinforce previous reports that HPDs significantly compromise a variety of auditory perceptual facilities, particularly sound localization due to distortions of high-frequency spectral cues that are important for the avoidance of front-back confusions.

摘要

耳塞等听力保护装置(HPD)有助于减轻噪声暴露,并降低经常暴露于高强度声音的人群中听力损失的发生率。然而,许多现有HPD导致的空间声学信息失真和低强度声音可听度降低,使得在听觉态势感知至关重要的高风险(如军事或执法)环境中使用这些装置变得不可行。在此,我们评估了:(1)使用转头范式的声源定位准确性;(2)使用改良版QuickSIN测试的噪声中语音识别能力;(3)使用二选一强制选择任务的音调检测阈值。受试者为10名听力正常的年轻男性。测试了四种不同的HPD(两种有源,两种无源),包括两种新的且之前未测试过的装置。相对于未佩戴(对照)状态下的表现,所有测试的HPD在各项任务中均显著降低了表现,不过有一种有源HPD略微改善了高频音调检测阈值,且未降低语音识别能力。针对使用双耳人体模型在佩戴和未佩戴测试HPD的情况下测量的头部相关传递函数,对行为数据进行了研究。数据证实了先前的报告,即HPD会显著损害各种听觉感知功能,尤其是声源定位,这是由于高频频谱线索失真对避免前后混淆很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7352/4551850/2778c7992705/pone.0136568.g001.jpg

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