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混响和掩蔽噪声波动对语音双耳掩蔽的影响。

Effects of reverberation and masker fluctuations on binaural unmasking of speech.

机构信息

VU University Medical Center, ENT/Audiology EMGO+ Institute for Health and Care Research, P.O. Box 7057, 1007 MB Amsterdam, The Netherlands.

出版信息

J Acoust Soc Am. 2012 Sep;132(3):1581-91. doi: 10.1121/1.4740500.

Abstract

In daily life, listeners use two ears to understand speech in situations which typically include reverberation and non-stationary noise. In headphone experiments, the binaural benefit for speech in noise is often expressed as the difference in speech reception threshold between diotic (N(0)S(0)) and dichotic (N(0)S(π)) conditions. This binaural advantage (BA), arising from the use of inter-aural phase differences, is about 5-6 dB in stationary noise, but may be lower in everyday conditions. In the current study, BA was measured in various combinations of noise and artificially created diotic reverberation, for normal-hearing and hearing-impaired listeners. Speech-intelligibility models were applied to quantify the combined effects. Results showed that in stationary noise, diotic reverberation did not affect BA. BA was reduced in conditions where the masker fluctuated. With additional reverberation, however, it was restored. Results for both normal-hearing and hearing-impaired listeners were accounted for by assuming that binaural unmasking is only effectively realized at low instantaneous speech-to-noise ratios (SNRs). The observed BA was related to the distribution of SNRs resulting from fluctuations, reverberation, and peripheral processing. It appears that masker fluctuations and reverberation, both relevant for everyday communication, interact in their effects on binaural unmasking and need to be considered together.

摘要

在日常生活中,听众会使用两只耳朵在通常包括混响和非稳态噪声的环境中理解言语。在耳机实验中,双耳对噪声中的言语的益处通常表示为对态(N(0)S(0))和双态(N(0)S(π))条件下言语接收阈值的差异。这种源自于使用耳间相位差的双耳优势(BA)在稳态噪声中约为 5-6dB,但在日常情况下可能较低。在当前的研究中,在正常听力和听力受损的听众中,各种噪声和人工创建的对态混响的组合中测量了 BA。应用言语可懂度模型来量化组合效果。结果表明,在稳态噪声中,对态混响不会影响 BA。在掩蔽噪声波动的情况下,BA 会降低。但是,随着额外混响的出现,它会恢复。对于正常听力和听力受损的听众的结果,通过假设仅在低瞬时言语噪声比(SNR)下才能有效地实现双耳掩蔽来解释。观察到的 BA 与掩蔽噪声波动、混响和外周处理产生的 SNR 分布有关。似乎掩蔽噪声波动和混响都与日常交流相关,它们对双耳掩蔽的影响相互作用,需要一起考虑。

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