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仰角和方位角均变化的声源的最小可听角度阈值。

Minimum audible angle thresholds for sources varying in both elevation and azimuth.

作者信息

Perrott D R, Saberi K

机构信息

Psychoacoustics Laboratory, California State University, Los Angeles 90032.

出版信息

J Acoust Soc Am. 1990 Apr;87(4):1728-31. doi: 10.1121/1.399421.

Abstract

Minimum audible angle (MAA) thresholds were obtained for four subjects in a two-alternative, forced-choice, three up/one down, adaptive paradigm as a function of the orientation of the array of sources. With sources distributed on the horizontal plane, the mean MAA threshold was 0.97 degrees. With the sources distributed on the vertical plane (array rotated 90 degrees), the mean MAA threshold was 3.65 degrees. Performance in both conditions was well in line with previous experiments of this type. Tests were also conducted with sources distributed on oblique planes. As the array was rotated from 10 degrees-60 degrees from the horizontal plane, relatively little change in the MAA threshold was observed; the mean MAA thresholds ranged from 0.78 degrees to 1.06 degrees. Only when the array was nearly vertical (80 degrees) was there any appreciable loss in spatial resolution; the MAA threshold had increased to 1.8 degrees. The relevance of these results to research on auditory localization under natural listening conditions, especially in the presence of head movements, is also discussed.

摘要

在双选、强制选择、三上一下自适应范式中,针对四名受试者,根据声源阵列的方向获取了最小可听角度(MAA)阈值。当声源分布在水平面上时,平均MAA阈值为0.97度。当声源分布在垂直平面上(阵列旋转90度)时,平均MAA阈值为3.65度。两种情况下的表现与此前此类实验结果非常吻合。还对声源分布在斜面上的情况进行了测试。当阵列从水平面旋转10度至60度时,观察到MAA阈值变化相对较小;平均MAA阈值范围为0.78度至1.06度。只有当阵列几乎垂直(80度)时,空间分辨率才出现明显下降;MAA阈值增至1.8度。还讨论了这些结果与自然聆听条件下听觉定位研究的相关性,尤其是在存在头部运动的情况下。

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