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人类听众的相对声音定位能力。

Relative sound localisation abilities in human listeners.

作者信息

Wood Katherine C, Bizley Jennifer K

机构信息

University College London Ear Institute, 332 Grays Inn Road, London, WC1X 8EE, United Kingdom.

出版信息

J Acoust Soc Am. 2015 Aug;138(2):674-86. doi: 10.1121/1.4923452.

Abstract

Spatial acuity varies with sound-source azimuth, signal-to-noise ratio, and the spectral characteristics of the sound source. Here, the spatial localisation abilities of listeners were assessed using a relative localisation task. This task tested localisation ability at fixed angular separations throughout space using a two-alternative forced-choice design across a variety of listening conditions. Subjects were required to determine whether a target sound originated to the left or right of a preceding reference in the presence of a multi-source noise background. Experiment 1 demonstrated that subjects' ability to determine the relative location of two sources declined with less favourable signal-to-noise ratios and at peripheral locations. Experiment 2 assessed performance with both broadband and spectrally restricted stimuli designed to limit localisation cues to predominantly interaural level differences or interaural timing differences (ITDs). Predictions generated from topographic, modified topographic, and two-channel models of sound localisation suggest that for low-pass stimuli, where ITD cues were dominant, the two-channel model provides an adequate description of the experimental data, whereas for broadband and high frequency bandpass stimuli none of the models was able to fully account for performance. Experiment 3 demonstrated that relative localisation performance was uninfluenced by shifts in gaze direction.

摘要

空间敏锐度会因声源方位、信噪比以及声源的频谱特性而有所不同。在此,通过一项相对定位任务来评估听众的空间定位能力。该任务使用双选强制选择设计,在各种聆听条件下,于整个空间的固定角间距处测试定位能力。要求受试者在多源噪声背景下,判断目标声音是源自先前参考声源的左侧还是右侧。实验1表明,受试者确定两个声源相对位置的能力会随着信噪比变差以及在周边位置而下降。实验2评估了使用宽带和频谱受限刺激时的表现,这些刺激旨在将定位线索主要限制为耳间水平差异或耳间时间差异(ITD)。从声音定位的地形模型、改进的地形模型和双通道模型得出的预测表明,对于以ITD线索为主导的低通刺激,双通道模型能够充分描述实验数据,而对于宽带和高频带通刺激,没有一个模型能够完全解释实验表现。实验3表明,相对定位表现不受注视方向变化的影响。

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