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分频段线索在双耳掩蔽中的作用。

Subcomponent cues in binaural unmasking.

机构信息

School of Psychology, Cardiff University, Tower Building, Park Place, Cardiff CF10 3AT, United Kingdom. CullingJ@cf. ac.uk

出版信息

J Acoust Soc Am. 2011 Jun;129(6):3846-55. doi: 10.1121/1.3560944.

Abstract

The addition of a signal in the N0Sπ binaural configuration gives rise to fluctuations in interaural phase and amplitude. Sensitivity to these individual cues was measured by applying sinusoidal amplitude modulation (AM) or quasi-frequency modulation (QFM) to a band of noise. Discrimination between interaurally in-phase and out-of-phase modulation was measured using an adaptive task for narrow bands of noise at center frequencies from 250 to 1500 Hz, for modulation rates of 2-40 Hz, and with or without flanking bands of diotic noise. Discrimination thresholds increased steeply for QFM with increasing center frequency, but increased only modestly for AM, and mainly for modulation rates below 10 Hz. Flanking bands of noise increased thresholds for AM, but had no consistent effect for QFM. The results suggest that two underlying mechanisms may support binaural unmasking: one most sensitive to interaural amplitude modulations that is susceptible to across-frequency interference, and a second, most sensitive to interaural phase modulations that is immune to such effects.

摘要

在 N0Sπ 双耳配置中添加信号会导致两耳相位和幅度的波动。通过对噪声带施加正弦幅度调制 (AM) 或准频率调制 (QFM),可以测量对这些单独线索的敏感性。使用自适应任务测量在相位和非相位调制之间的两耳辨别,该任务适用于中心频率为 250 至 1500 Hz 的窄噪声带,调制率为 2-40 Hz,有或没有同相噪声的侧翼带。随着中心频率的增加,QFM 的辨别阈值急剧增加,但 AM 的增加幅度适中,主要是在低于 10 Hz 的调制率下。噪声侧翼带增加了 AM 的阈值,但对 QFM 没有一致的影响。结果表明,两种潜在机制可能支持双耳掩蔽:一种对两耳幅度调制最敏感,易受跨频干扰,另一种对两耳相位调制最敏感,不受此类影响。

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