Sensory unpleasantness of very-high frequency sound and audible ultrasound.

IF 2.1 2区 物理与天体物理 Q2 ACOUSTICS
Ben Lineton, Rahma Abdul Rahman Al Balushi, Sian Lloyd Jones, Timothy G Leighton, Mark D Fletcher
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引用次数: 0

Abstract

Audible very-high frequency sound (VHFS) and ultrasound (US) have been rated more unpleasant than lower frequency sounds when presented to listeners at similar sensation levels (SLs). In this study, 17 participants rated the sensory unpleasantness of 14-, 16-, and 18-kHz tones and a 1-kHz reference tone. Tones were presented at equal subjective loudness levels for each individual, corresponding to levels of 10, 20, and 30 dB SL measured at 1 kHz. Participants were categorized as either "symptomatic" or "asymptomatic" based on self-reported previous symptoms that they attributed to exposure to VHFS/US. In both groups, subjective loudness increased more rapidly with sound pressure level for VHFS/US than for the 1-kHz reference tone, which is consistent with a reduced dynamic range at the higher frequencies. For loudness-matched tones, participants rated VHFS/US as more unpleasant than that for the 1-kHz reference. These results suggest that increased sensory unpleasantness and reduced dynamic range at high frequencies should be considered when designing or deploying equipment which emits VHFS/US that could be audible to exposed people.

超高频声音和超声波的不悦感。
当听者在相似的感觉水平(SLs)下听到极高频率声音(VHFS)和超声波(US)时,会比听到较低频率的声音更难受。在这项研究中,17 名参与者对 14、16 和 18 千赫的音调以及 1 千赫的参考音调进行了感官不愉快度评分。每个人的主观响度水平相同,对应于 1 kHz 时测量的 10、20 和 30 dB SL 水平。受试者被分为 "有症状 "和 "无症状 "两组,其依据是受试者自述的因接触 VHFS/US 而导致的先前症状。在两组中,VHFS/US 的主观响度随声压级增加的速度比 1 kHz 参考音快,这与较高频率的动态范围减小一致。对于响度匹配的音调,参与者对 VHFS/US 的评价比对 1 千赫参考音调的评价更不愉快。这些结果表明,在设计或部署可能会被暴露者听到的 VHFS/US 设备时,应考虑到高频率下的不愉快感增加和动态范围减小的问题。
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来源期刊
CiteScore
4.60
自引率
16.70%
发文量
1433
审稿时长
4.7 months
期刊介绍: Since 1929 The Journal of the Acoustical Society of America has been the leading source of theoretical and experimental research results in the broad interdisciplinary study of sound. Subject coverage includes: linear and nonlinear acoustics; aeroacoustics, underwater sound and acoustical oceanography; ultrasonics and quantum acoustics; architectural and structural acoustics and vibration; speech, music and noise; psychology and physiology of hearing; engineering acoustics, transduction; bioacoustics, animal bioacoustics.
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