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Comparing behavioral and physiological measures of combination tones: Sex and race differences

机译:比较组合音的行为和生理测量:性别和种族差异

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Both distortion-product otoacoustic emissions (DPOAEs) and performance in an auditory-masking task involving combination tones were measured in the same frequency region in the same ears. In the behavioral task, a signal of 3.6 kHz (duration 300 ms, rise/fall time 20 ms) was masked by a 3.0-kHz tone (62 dB SPL, continuously presented). These two frequencies can produce a combination tone at 2.4 kHz. When a narrowband noise (2.0-2.8 kHz, 17 dB spectrum level) was added as a second masker, detection of the 3.6-kHz signal worsened by 6-9 dB (the Greenwood effect), revealing that listeners had been using the combination tone at 2.4 kHz as a cue for detection at 3.6 kHz. Several outcomes differed markedly by sex and racial background. The Greenwood effect was substantially larger in females than in males, but only for the White group. When the magnitude of the Greenwood effect was compared with the magnitude of the DPOAE measured in the 2.4 kHz region, the correlations typically were modest, but were high for Non-White males. For many subjects, then, most of the DPOAE measured in the ear canal apparently is not related to the combination-tone cue that is masked by the narrowband noise.
机译:在同一只耳朵的相同频率区域中,测量了失真产物耳声发射(DPOAE)和涉及组合音的听觉掩盖任务的性能。在行为任务中,3.6 kHz的信号(持续时间300 ms,上升/下降时间20 ms)被3.0 kHz的音调(62 dB SPL,连续显示)掩盖。这两个频率可以产生2.4 kHz的组合音调。当添加窄带噪声(2.0-2.8 kHz,17 dB频谱级别)作为第二个掩蔽器时,对3.6 kHz信号的检测恶化了6-9 dB(格林伍德效应),表明听众一直在使用组合音调以2.4 kHz的频率作为在3.6 kHz时检测的提示。某些结果在性别和种族背景上明显不同。女性的格林伍德效应明显大于男性,但仅对于白人群体。将格林伍德效应的幅度与在2.4 kHz区域中测得的DPOAE的幅度进行比较时,相关性通常不大,但对于非白人男性而言,相关性较高。因此,对于许多对象而言,在耳道中测量的大多数DPOAE显然与窄带噪声掩盖的组合音提示无关。

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