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

机译:主动和被动听力保护装置对声源定位语音识别和音调检测的影响

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摘要

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.
机译:耳塞之类的听力保护设备(HPD)可以减轻噪声暴露,并减少经常暴露于强烈声音中的人的听力损失。但是,由许多现有的HPD引起的空间声学信息失真和低强度声音的可听性降低可能使它们在需要听觉态势感知的高风险(例如,军事或执法)环境中无法使用。在这里,我们评估了(1)使用转弯范例的声源定位精度,(2)使用QuickSIN测试的修改版进行的有声语音识别,以及(3)使用两种选择的强制选择的音调检测阈值任务。受试者为10名正常听觉的年轻男性。测试了四个不同的HPD(两个主动,两个被动),包括两个新的且以前未测试过的设备。相对于无遮挡的(控制)性能,所有测试的HPD均显着降低了各项任务的性能,尽管一个活动的HPD略微提高了高频音调检测阈值,并且不会降低语音识别能力。对于使用双耳人体模型在有无HPD的情况下测量的与头部相关的传递函数,对行为数据进行了检查。数据强化了以前的报告,即HPD极大地损害了各种听觉感知设施,特别是由于高频频谱提示的失真而导致的声音定位,这对于避免前后混淆很重要。

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