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非同时掩蔽对双耳掩蔽级差的影响。

Effects of non-simultaneous masking on the binaural masking level difference.

机构信息

Department of Otolaryngology∕Head and Neck Surgery, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599, USA.

出版信息

J Acoust Soc Am. 2011 Feb;129(2):907-19. doi: 10.1121/1.3514528.

Abstract

The present study sought to clarify the role of non-simultaneous masking in the binaural masking level difference for maskers that fluctuate in level. In the first experiment the signal was a brief 500-Hz tone, and the masker was a bandpass noise (100-2000 Hz), with the initial and final 200-ms bursts presented at 40-dB spectrum level and the inter-burst gap presented at 20-dB spectrum level. Temporal windows were fitted to thresholds measured for a range of gap durations and signal positions within the gap. In the second experiment, individual differences in out of phase (NoSπ) thresholds were compared for a brief signal in a gapped bandpass masker, a brief signal in a steady bandpass masker, and a long signal in a narrowband (50-Hz-wide) noise masker. The third experiment measured brief tone detection thresholds in forward, simultaneous, and backward masking conditions for a 50- and for a 1900-Hz-wide noise masker centered on the 500-Hz signal frequency. Results are consistent with comparable temporal resolution in the in phase (NoSo) and NoSπ conditions and no effect of temporal resolution on individual observers' ability to utilize binaural cues in narrowband noise. The large masking release observed for a narrowband noise masker may be due to binaural masking release from non-simultaneous, informational masking.

摘要

本研究旨在阐明非同时掩蔽在水平波动掩蔽器的双耳掩蔽水平差中的作用。在第一个实验中,信号是一个短暂的 500Hz 音调,掩蔽器是一个带通噪声(100-2000Hz),初始和最终的 200ms 爆发呈现 40dB 谱级,爆发之间的间隙呈现 20dB 谱级。时间窗适用于在一系列间隙持续时间和间隙内信号位置测量的阈值。在第二个实验中,比较了在带通噪声掩蔽器中有间隙的短暂信号、在稳定带通掩蔽器中有短暂信号和在窄带(50Hz 宽)噪声掩蔽器中有长信号时的反相(NoSπ)阈值的个体差异。第三个实验测量了在 500Hz 信号频率中心的 50Hz 和 1900Hz 宽噪声掩蔽器的正向、同时和反向掩蔽条件下短暂音调检测阈值。结果与 NoSo 和 NoSπ 条件下可比的时间分辨率一致,并且时间分辨率对个体观察者在窄带噪声中利用双耳线索的能力没有影响。窄带噪声掩蔽器中观察到的大掩蔽释放可能是由于非同时的、信息性掩蔽的双耳掩蔽释放。

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本文引用的文献

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Note on informational masking.关于信息屏蔽的说明。
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