Eddins D A, Wright B A
Department of Psychology, University of Florida, Gainesville 32611.
J Acoust Soc Am. 1994 Dec;96(6):3432-42. doi: 10.1121/1.411450.
Two experiments are presented that investigate the influence of envelope fluctuation rate upon the magnitude of comodulation masking release (CMR). In Experiment 1, thresholds were measured for a tonal signal centered in either one or five masker bands. The maskers were either narrow-band noises or 100% sinusoidally amplitude-modulated (SAM) tones. The five masker bands had either the same (coherent) or different (incoherent) envelopes. Envelope rate was varied by manipulating either the noise bandwidth (10-200 Hz) or the SAM rate (10-128 Hz). The CMR values were largest for slow envelope rates. In Experiment 2, envelope coherence was simultaneously manipulated at two rates by amplitude modulating (10 Hz) narrow-band noises (100 Hz). The modulation depth was 100%, 83%, or 50%. The CMR based on the coherence of the noise carriers was about 5 dB, regardless of the SAM coherence or the modulation depth. The CMR based on the SAM coherence decreased from about 19 to 2 dB as modulation depth decreased, regardless of the noise-carrier coherence. Thresholds were highest when the envelope fluctuations were incoherent at both rates and were lowest when the envelope fluctuations were coherent at both rates. These data suggest that the auditory system is able to make across-frequency envelope comparisons at both envelope rates simultaneously.
本文介绍了两项实验,研究了包络波动速率对共调制掩蔽释放(CMR)大小的影响。在实验1中,测量了位于一个或五个掩蔽频段中心的音调信号的阈值。掩蔽音为窄带噪声或100%正弦幅度调制(SAM)音调。五个掩蔽频段具有相同(相干)或不同(非相干)的包络。通过操纵噪声带宽(10-200Hz)或SAM速率(10-128Hz)来改变包络速率。对于缓慢的包络速率,CMR值最大。在实验2中,通过对100Hz的窄带噪声进行10Hz的幅度调制,同时以两种速率操纵包络相干性。调制深度为100%、83%或50%。基于噪声载波相干性的CMR约为5dB,与SAM相干性或调制深度无关。基于SAM相干性的CMR随着调制深度的降低从约19dB降至2dB,与噪声载波相干性无关。当两个速率下的包络波动都不相干时阈值最高,而当两个速率下的包络波动都相干时阈值最低。这些数据表明,听觉系统能够同时在两个包络速率下进行跨频率包络比较。