Lateralization of an auditory signal in correlated noise and in uncorrelated noise as a function of signal frequency

D. E. Robinson, J. P. Egan
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引用次数: 8

Abstract

Listeners lateralized a monaural signal presented against a continuous background of perfectly correlated noise (NO) or of uncorrelated noise (NU). Measures of signal detectability were also secured in separate tests. Psychometric functions (percent correct vs signal energy) were determined for each task. For a tonal signal of either low or high frequency, a listener requires only slightly greater signal energy (about 1 dB) in order to lateralize as well as he can detect when the noise is uncorrelated (NU). When the noise is perfectly correlated (NO), the slope of the psychometric function for lateralization depends upon signal frequency. With 250 Hz, the slope of the psychometric function for lateralization is much smaller than that for detection. With 1,000 Hz, the function for lateralization is steeper than that for 250 Hz, but the slope is still less than that of the function for detection for 1,000 Hz. With 2,000 Hz, the function for lateralization has about the same slope as that for detection.
听觉信号在相关噪声和不相关噪声中作为信号频率函数的偏侧化
听者在连续的完全相关噪声(NO)或不相关噪声(NU)背景下将单耳信号横向化。在单独的测试中还确定了信号可探测性的措施。每个任务的心理测量函数(正确率vs信号能量)都是确定的。对于低频或高频的音调信号,听者只需要稍微大一点的信号能量(约1db),就可以横向化,也可以检测到噪声何时不相关(NU)。当噪声完全相关(NO)时,侧化心理测量函数的斜率取决于信号频率。在250 Hz时,侧化心理测量函数的斜率远小于检测函数的斜率。在1000hz时,侧边化函数比250hz时的函数更陡,但斜率仍然小于1000hz时的检测函数。在2,000 Hz时,侧边化函数的斜率与检测函数的斜率大致相同。
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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