Grose J H, Hall J W
The University of North Carolina, Division of Otolaryngology, Chapel Hill 27514.
J Acoust Soc Am. 1989 Mar;85(3):1276-84. doi: 10.1121/1.397458.
The purpose of this investigation was to examine two stimulus parameters that were reasoned to be of importance to comodulation masking release (CMR). The first was the degree of fluctuation, or depth of modulation, in the masker bands, and the second was the temporal position of the signal with respect to the modulations of the masker. The investigation began by demonstrating the efficacy of sinusoidally amplitude-modulated (SAM) tonal complex maskers in eliciting CMR. "Nine-band" maskers, 650 ms in duration, were constructed by adding together nine SAM tones spaced at 100-Hz intervals from 300 to 1100 Hz. The rate of modulation for each SAM tone was 10 Hz, and the depth of modulation was 100%. Using such maskers, it was shown that when the on-frequency SAM tone had a modulation depth of 100%, the threshold for a 250-ms, 700-Hz tone improved monotonically as the modulation depths of the flanking SAM tones increased from 0% to 100%. When the on-frequency SAM tone had a modulation depth of 63%, some listeners performed optimally when the flanking SAM tones also exhibited a modulation depth of 63%, whereas others performed best when the flankers had modulation depths of 100%. With regard to signal position, a typical CMR effect was observed when the signal, consisting of a train of three 50-ms, 700-Hz tone bursts, was placed in the dips of the on-frequency masker. However, when the signal was placed at the peaks of the envelope, an increase in masking was observed for a comodulated masker.(ABSTRACT TRUNCATED AT 250 WORDS)
本研究的目的是考察两个被认为对共调制掩蔽释放(CMR)至关重要的刺激参数。第一个是掩蔽频段的波动程度或调制深度,第二个是信号相对于掩蔽器调制的时间位置。研究首先通过展示正弦幅度调制(SAM)音调复合掩蔽器引发CMR的效果展开。“九频段”掩蔽器时长650毫秒,由九个从300赫兹到1100赫兹、间隔100赫兹的SAM音调相加构成。每个SAM音调的调制率为10赫兹,调制深度为100%。使用此类掩蔽器的研究表明,当中心频率SAM音调的调制深度为100%时,随着侧翼SAM音调的调制深度从0%增加到100%,250毫秒、700赫兹音调的阈值单调改善。当中心频率SAM音调的调制深度为63%时,一些听众在侧翼SAM音调的调制深度也为63%时表现最佳,而另一些听众在侧翼调制深度为100%时表现最佳。关于信号位置,当由三个50毫秒、700赫兹音调脉冲串组成的信号置于中心频率掩蔽器的波谷时,观察到典型的CMR效应。然而,当信号置于包络的峰值处时,对于共调制掩蔽器,观察到掩蔽增加。(摘要截断于250字)