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首页> 外文期刊>The Journal of the Acoustical Society of America >Differences in loudness of positive and negative Schroeder-phase tone complexes as a function of the fundamental frequency
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Differences in loudness of positive and negative Schroeder-phase tone complexes as a function of the fundamental frequency

机译:正负Schroeder相音复合体的响度差异是基频的函数

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Tone complexes with positive (m+) and negative (m-) Schroeder phase show large differences in masking efficiency. This study investigated whether the different phase characteristics also affect loudness. Loudness matches between m+ and m- complexes were measured as a function of (1) the fundamental frequency (f(0)) for different frequency bands in normal-hearing and hearing-impaired subjects, and (2) intensity level in normal-hearing subjects. In normal-hearing subjects, the level of the m+ stimulus was up to 10 dB higher than that of the corresponding m- stimulus at the point of equal loudness. The largest differences in loudness were found for levels between 20 and 60 dB SL. In hearing-impaired listeners, the difference was reduced, indicating the relevance of active cochlear mechanisms. Loudness matches of m+ and m- stimuli to a common noise reference (experiment 3) showed differences as a function of f(0) that were in line with direct comparisons from experiment I and indicated additionally that the effect is mainly due to the specific internal processing of m+. The findings are roughly consistent with studies pertaining to masking efficiency and can probably not be explained by current loudness models, supporting the need for incorporating more realistic cochlea simulations in future loudness models. (c) 2007 Acoustical Society of America.
机译:具有正(m +)和负(m-)Schroeder相的音调配合物在掩蔽效率上显示出很大的差异。这项研究调查了不同的相位特性是否也会影响响度。 m +和m-配合物之间的响度匹配是根据以下因素进行测量的:(1)正常听力和听力障碍受试者中不同频段的基本频率(f(0)),以及(2)正常听力的受试者的强度水平科目。在听力正常的受试者中,在响度相等时,m +刺激的水平比相应的m-刺激的水平高10 dB。发现响度的最大差异是在20至60 dB SL之间。在听力受损的听众中,差异有所减小,表明主动的耳蜗机制具有相关性。 m +和m-刺激与普通噪声参考的响度匹配(实验3)显示出作为f(0)的函数的差异,与实验I的直接比较一致,并另外表明,这种影响主要是由于特定的内部处理m +。这些发现与有关掩蔽效率的研究大体上一致,并且可能无法用当前的响度模型来解释,这支持了在未来的响度模型中纳入更现实的耳蜗模拟的需求。 (c)2007年美国声学学会。

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