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正常和听力受损听众在空间多噪声源布局中的双耳降噪指向性。

Directivity of binaural noise reduction in spatial multiple noise-source arrangements for normal and impaired listeners.

作者信息

Peissig J, Kollmeier B

机构信息

AG Medizinische Physik, FB Physik, Universität Oldenburg, Germany.

出版信息

J Acoust Soc Am. 1997 Mar;101(3):1660-70. doi: 10.1121/1.418150.

Abstract

Speech reception thresholds (SRTs) were obtained for different azimuths of up to three interfering sound sources in a simulated ("virtual") spatial arrangement. For the SRT measurements a fast subjective threshold assessment method was used. The reduction in SRT relative to the reference threshold caused by spatial separation of target and interference signal is called the intelligibility level difference (ILD). For normal listeners, the maximum ILD was achieved at 105 degrees or 255 degrees azimuth of a single noise source when the target emanated from the front (0 degree azimuth). The ILD decreased rapidly if the number of interfering signals was increased and if they were located on opposite sides of the head. When using continuous speech as interference, this decrease of ILD was less pronounced. These findings indicate that the binaural system can suppress interference from only one azimuthal region at a time and can utilize temporal pauses in the interference to suppress a second interference from a different direction. For eight sensorineural impaired listeners, the maximum attainable ILD for one interfering noise source was reduced in a way not predictable from the audiogram. The ability to exploit pauses in the signal of an interfering talker was also reduced. Hence, hearing-impaired listeners are handicapped in realistic spatial interference situations both by an increased monaural SRT and a reduced binaural noise reduction ability.

摘要

在模拟(“虚拟”)空间布局中,针对多达三个干扰声源的不同方位获取了言语接受阈(SRT)。对于SRT测量,使用了一种快速主观阈评估方法。目标信号与干扰信号的空间分离导致的SRT相对于参考阈的降低称为可懂度水平差(ILD)。对于正常听力的听众,当目标信号从正面(0度方位)发出时,单个噪声源在105度或255度方位可实现最大ILD。如果干扰信号的数量增加且位于头部两侧,ILD会迅速下降。当使用连续言语作为干扰时,ILD的这种下降不太明显。这些发现表明,双耳系统一次只能抑制来自一个方位区域的干扰,并且可以利用干扰中的时间停顿来抑制来自不同方向的第二种干扰。对于八名感音神经性听力受损的听众,一个干扰噪声源的最大可达到的ILD以一种无法从听力图预测的方式降低。利用干扰谈话者信号中的停顿的能力也降低了。因此,听力受损的听众在现实的空间干扰情况下,单耳SRT增加和双耳降噪能力降低都会使其受到阻碍。

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