van der Heijden M, Trahiotis C
Department of Surgery (Otolaryngology), University of Connecticut Health Center, Farmington 06030, USA.
J Acoust Soc Am. 1998 Mar;103(3):1609-14. doi: 10.1121/1.421295.
Detection thresholds were measured for an antiphasic (S pi) 500-Hz tone masked by a binaural noise, as a function of the bandwidth of the noise. Several values of interaural correlation of the masking noise were used, ranging from -1 to +1. The bandwidth dependence of the thresholds showed a pattern consistent with a 100-Hz-wide critical band for most values of interaural correlation, even for those values which resulted in a considerable binaural release of masking. Only when the interaural correlation of the masking noise was very close to, or equal to, unity was the bandwidth dependence of the thresholds in accord with an approximately 300-Hz-wide "binaural" critical band measured in previous studies. Our analysis of the data calls into question the commonly stated notion that binaural processing is characterized by a wider critical band than is monaural processing.
测量了由双耳噪声掩蔽的反相(S pi)500赫兹纯音的检测阈值,该阈值是噪声带宽的函数。使用了掩蔽噪声的几种耳间相关性值,范围从-1到+1。对于大多数耳间相关性值,阈值的带宽依赖性呈现出与100赫兹宽的临界带一致的模式,即使对于那些导致相当大的双耳掩蔽释放的值也是如此。只有当掩蔽噪声的耳间相关性非常接近或等于1时,阈值的带宽依赖性才与先前研究中测量的约300赫兹宽的“双耳”临界带一致。我们对数据的分析质疑了通常所说的观点,即双耳处理的特征是临界带比单耳处理更宽。