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用于复杂声音定位的频谱加权函数。II. 竞争噪声的影响。

Spectral weighting functions for localization of complex sound. II. The effect of competing noise.

作者信息

Folkerts Monica L, Picou Erin M, Stecker G Christopher

机构信息

Department of Otolaryngology-Head and Neck Surgery, University of North Carolina at Chapel Hill, 170 Manning Drive, Chapel Hill, North Carolina 27599-7070, USA.

Department of Hearing and Speech Sciences, Vanderbilt University Medical Center, 1215 21st Avenue South, Nashville, Tennessee 37232, USA.

出版信息

J Acoust Soc Am. 2023 Jul 1;154(1):494-501. doi: 10.1121/10.0020294.

Abstract

Spectral weighting of sound localization cues was measured in the presence of three levels of competing noise presented in the free field. Target stimuli were complex tones containing seven tonal components, presented from an ∼120° range of frontal azimuths. Competitors were two independent Gaussian noises presented from 90° left and right azimuth at one of three levels yielding +9, 0, and -6 dB signal-to-noise ratio. Results revealed the greatest perceptual weight for components within the interaural time difference (ITD) "dominance region," which was found previously to peak around the 800-Hz component in quiet [Folkerts and Stecker (2022) J. Acoust. Soc. Am. 151, 3409-3425]. Here, peak weights were shifted toward lower-frequency components (i.e., 400 Hz) in all competing noise conditions. These results contradict the hypothesis of a shift in the peak weights toward higher frequencies based on previous behavioral localization performance in competing noise but are consistent with binaural cue sensitivity, availability, and reliability; measured low-frequency ITD cues within the dominance region were least disrupted by the presence of competing noise.

摘要

在自由场中呈现三种竞争噪声水平的情况下,测量了声音定位线索的频谱加权。目标刺激是包含七个音调成分的复合音调,从约120°的额方位角范围内呈现。竞争者是从90°左、右方位以三种水平之一呈现的两个独立高斯噪声,产生+9、0和-6dB的信噪比。结果显示,耳间时间差(ITD)“主导区域”内成分的感知权重最大,此前发现在安静环境中该区域在800Hz成分附近达到峰值[Folkerts和Stecker(2022年)《美国声学学会杂志》151, 3409-3425]。在此,在所有竞争噪声条件下,峰值权重都向低频成分(即400Hz)偏移。这些结果与基于先前在竞争噪声中的行为定位表现得出的峰值权重向高频偏移的假设相矛盾,但与双耳线索的敏感性、可用性和可靠性一致;在主导区域内测量的低频ITD线索受竞争噪声存在的干扰最小。

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Perceptual Weighting of Binaural Lateralization Cues across Frequency Bands.双耳分听线索在不同频带上的感知加权。
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