Stability of individual loudness functions obtained by magnitude estimation and production

R. Hellman
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引用次数: 58

Abstract

A correlational analysis of individual magnitude estimation and production exponents at the same frequency was perfor.med, as well as an analysis of individual exponents produced in different sessions by the same procedure across frequency(250, 1, 000, and 3, 000 Hz). Taken together, results show, first, that individual exponent differences do not decrease by counterbalancing magnitude estimation with magnitude production, and, second, that individual exponent differences remain stable over time despite changes in stimulus frequency. Further results disclose that although individual magnitude estimation and production exponents do not necessarily obey the .6 power law, it is possible to predict the slope (exponent) of an equal-sensation function averaged for a group of listeners from individual magnitude estimation and production data. Assuming that individual listeners with sensorineural hearing loss also produce stable and reliable magnitude functions, it is also shown that the slope of the loudness-recruitment function measured by magnitude estimation and production can be predicted for individuals with bilateral losses of long duration. Thus, results obtained in normal and in pathological ears suggest that individual listeners can produce loudness judgments that reveal, albeit indirectly, the input-output characteristic of the auditory system.
由星等估计和产生的单个响度函数的稳定性
对同一频率下的个体震级估计和生产指数进行了相关分析。med,以及对不同频率(250hz、1000hz和3000hz)的相同程序在不同会话中产生的单个指数的分析。综上所述,结果表明,首先,个体指数差异不会通过量级估计与量级产生相平衡而减小;其次,尽管刺激频率发生变化,个体指数差异仍会随着时间的推移保持稳定。进一步的结果表明,虽然单个震级估计和生产指数不一定服从。6幂律,但可以从单个震级估计和生产数据中预测一组听众平均的等感觉函数的斜率(指数)。假设感觉神经性听力损失的个体听者也能产生稳定可靠的幅度函数,研究还表明,对于长时间双侧听力损失的个体,通过幅度估计和产生测量的响度招募函数的斜率可以预测。因此,在正常和病理耳朵中获得的结果表明,单个听者可以产生响度判断,尽管是间接地揭示了听觉系统的输入-输出特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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