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Tuning of Human Modulation Filters Is Carrier-Frequency Dependent

机译:人体调制滤波器的调谐取决于载波频率

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摘要

Recent studies employing speech stimuli to investigate ‘cocktail-party’ listening have focused on entrainment of cortical activity to modulations at syllabic (5 Hz) and phonemic (20 Hz) rates. The data suggest that cortical modulation filters (CMFs) are dependent on the sound-frequency channel in which modulations are conveyed, potentially underpinning a strategy for separating speech from background noise. Here, we characterize modulation filters in human listeners using a novel behavioral method. Within an ‘inverted’ adaptive forced-choice increment detection task, listening level was varied whilst contrast was held constant for ramped increments with effective modulation rates between 0.5 and 33 Hz. Our data suggest that modulation filters are tonotopically organized (i.e., vary along the primary, frequency-organized, dimension). This suggests that the human auditory system is optimized to track rapid (phonemic) modulations at high sound-frequencies and slow (prosodic/syllabic) modulations at low frequencies.
机译:最近使用语音刺激来调查“鸡尾酒会”听音的最新研究集中在以音节(5 Hz)和音素(20 Hz)的速率将皮层活动夹带到调制上。数据表明,皮质调制滤波器(CMF)取决于在其中传送调制的声频通道,这可能为从背景噪声中分离语音的策略提供了支撑。在这里,我们使用一种新颖的行为方法来表征人类听众中的调制滤波器。在“反向”自适应强制选择增量检测任务中,聆听级别会有所变化,而对比度则保持稳定,斜率为增量,有效调制率在0.5到33 Hz之间。我们的数据表明调制滤波器是按拓扑结构组织的(即沿主要的,按频率组织的维度变化)。这表明对人类听觉系统进行了优化,以跟踪在高声频下的快速(音素)调制和在低频下的慢速(韵律/音节)调制。

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