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双耳空间化对助听器无线麦克风系统对正常听力和听力障碍者的影响。

Effects of Binaural Spatialization in Wireless Microphone Systems for Hearing Aids on Normal-Hearing and Hearing-Impaired Listeners.

机构信息

1 Swiss Federal Institute of Technology, Signal Processing Laboratory, Lausanne, Switzerland.

2 Acoustique Riponne, Lausanne, Switzerland.

出版信息

Trends Hear. 2018 Jan-Dec;22:2331216517753548. doi: 10.1177/2331216517753548.

Abstract

Little is known about the perception of artificial spatial hearing by hearing-impaired subjects. The purpose of this study was to investigate how listeners with hearing disorders perceived the effect of a spatialization feature designed for wireless microphone systems. Forty listeners took part in the experiments. They were arranged in four groups: normal-hearing, moderate, severe, and profound hearing loss. Their performance in terms of speech understanding and speaker localization was assessed with diotic and binaural stimuli. The results of the speech intelligibility experiment revealed that the subjects presenting a moderate or severe hearing impairment better understood speech with the spatialization feature. Thus, it was demonstrated that the conventional diotic binaural summation operated by current wireless systems can be transformed to reproduce the spatial cues required to localize the speaker, without any loss of intelligibility. The speaker localization experiment showed that a majority of the hearing-impaired listeners had similar performance with natural and artificial spatial hearing, contrary to the normal-hearing listeners. This suggests that certain subjects with hearing impairment preserve their localization abilities with approximated generic head-related transfer functions in the frontal horizontal plane.

摘要

对于听力障碍者对人工空间听觉的感知知之甚少。本研究旨在调查听力障碍者如何感知专为无线麦克风系统设计的空间化功能的效果。40 名听众参与了实验。他们被分为四组:正常听力、中度、重度和极重度听力损失。使用单耳和双耳刺激评估他们在言语理解和说话人定位方面的表现。言语可懂度实验的结果表明,中度或重度听力障碍的受试者更好地理解了具有空间化功能的言语。因此,证明了当前无线系统所采用的传统单耳双耳总和可以转换为再现定位说话人的空间线索,而不会降低可懂度。说话人定位实验表明,大多数听力障碍者与自然和人工空间听觉的表现相似,与正常听力者相反。这表明某些听力障碍者在额状面中保留了其定位能力,而采用近似的通用头部相关传递函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f28/5821302/76788b4ec7b4/10.1177_2331216517753548-fig1.jpg

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