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Detection of spectrally complex signals in comodulated maskers: Effect of temporal fringe

机译:共调制掩蔽器中频谱复杂信号的检测:时间条纹的影响

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摘要

This study tested the hypothesis that masking release for a complex signal under conditions where signal energy is present in all frequency regions occupied by the masker is attributable to an across-frequency-channel comodulation masking release (CMR) process. The approach was to identify a signature CMR trait, and to then determine if that trait was associated with the detection advantage for complex signals. The selected trait was the decline of CMR in the presence of a random temporal fringe. In experiment 1, a masking release was observed for a 4-component harmonic signal presented in a comodulated masker, and this masking release was diminished by the random temporal fringe. A similar effect was observed in experiment 2 for a 4-component inharmonic signal. These results support the hypothesis that a CMR can be measured for a complex signal even when there is substantial spectral overlap between the signal and its comodulated masker. This finding has consequences for CMR models since it demonstrates that the presence of ‘signal-free’ cue bands is not a prerequisite for CMR, and that the presence of comodulation during the signal window is not sufficient to result in CMR.
机译:这项研究检验了以下假设:在掩蔽器占据的所有频率区域中存在信号能量的情况下,复杂信号的掩蔽释放可归因于跨频信道共调制掩蔽释放(CMR)过程。该方法是识别签名CMR特征,然后确定该特征是否与复杂信号的检测优势相关。选择的特征是在随机的时间条纹存在下CMR的下降。在实验1中,观察到在共调制掩蔽器中出现的4分量谐波信号的掩蔽释放,并且该掩蔽释放因随机的临时条纹而减小。在实验2中,对于4分量非谐波信号观察到了类似的效果。这些结果支持这样的假设:即使信号与其共调制掩蔽器之间存在实质的频谱重叠,也可以针对复杂信号测量CMR。这一发现对CMR模型具有重要意义,因为它表明“无信号”提示带的存在不是CMR的前提,并且信号窗口期间共调制的存在不足以导致CMR。

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