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双耳共调制掩蔽释放:掩蔽声耳间相关性的影响

Binaural comodulation masking release: effects of masker interaural correlation.

作者信息

Hall Joseph W, Buss Emily, Grose John H

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. 2006 Dec;120(6):3878-88. doi: 10.1121/1.2357989.

Abstract

Binaural detection was examined for a signal presented in a narrow band of noise centered on the on-signal masking band (OSB) or in the presence of flanking noise bands that were random or comodulated with respect to the OSB. The noise had an interaural correlation of 1.0 (No), 0.99 or 0.95. In No noise, random flanking bands worsened Spi detection and comodulated bands improved Spi detection for some listeners but had no effect for other listeners. For the 0.99 or 0.95 interaural correlation conditions, random flanking bands were less detrimental to Spi detection and comodulated flanking bands improved Spi detection for all listeners. Analyses based on signal detection theory indicated that the improvement in Spi thresholds obtained with comodulated bands was not compatible with an optimal combination of monaural and binaural cues or to across-frequency analyses of dynamic interaural phase differences. Two accounts consistent with the improvement in Spi thresholds in comodulated noise were (1) envelope information carried by the flanking bands improves the weighting of binaural cues associated with the signal; (2) the auditory system is sensitive to across-frequency differences in ongoing interaural correlation.

摘要

针对呈现于以信号掩蔽带(OSB)为中心的窄带噪声中,或存在相对于OSB为随机或同调制的侧翼噪声带的情况下,对双耳检测进行了研究。噪声的耳间相关性为1.0(无噪声,No)、0.99或0.95。在无噪声(No)条件下,随机侧翼带会使某些听众的Spi检测变差,而同调制带对某些听众改善了Spi检测,但对其他听众则无影响。对于耳间相关性为0.99或0.95的条件,随机侧翼带对Spi检测的损害较小,而同调制侧翼带对所有听众都改善了Spi检测。基于信号检测理论的分析表明,同调制带所获得的Spi阈值的改善,与单耳和双耳线索的最佳组合或动态耳间相位差的跨频率分析不相符。与同调制噪声中Spi阈值改善相一致的两种解释是:(1)侧翼带所携带的包络信息改善了与信号相关的双耳线索的加权;(2)听觉系统对正在进行的耳间相关性的跨频率差异敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/891d/1994906/d5bd263f5907/nihms18582f1.jpg

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