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Complex-Tone Pitch Discrimination in Listeners With Sensorineural Hearing Loss

机译:具有感觉神经性听力损失的听众中的复音调音判别

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摘要

Physiological studies have shown that noise-induced sensorineural hearing loss (SNHL) enhances the amplitude of envelope coding in auditory-nerve fibers. As pitch coding of unresolved complex tones is assumed to rely on temporal envelope coding mechanisms, this study investigated pitch-discrimination performance in listeners with SNHL. Pitch-discrimination thresholds were obtained for 14 normal-hearing (NH) and 10 hearing-impaired (HI) listeners for sine-phase (SP) and random-phase (RP) complex tones. When all harmonics were unresolved, the HI listeners performed, on average, worse than NH listeners in the RP condition but similarly to NH listeners in the SP condition. The increase in pitch-discrimination performance for the SP relative to the RP condition (F0DL ratio) was significantly larger in the HI as compared with the NH listeners. Cochlear compression and auditory-filter bandwidths were estimated in the same listeners. The estimated reduction of cochlear compression was significantly correlated with the increase in the F0DL ratio, while no correlation was found with filter bandwidth. The effects of degraded frequency selectivity and loss of compression were considered in a simplified peripheral model as potential factors in envelope enhancement. The model revealed that reducing cochlear compression significantly enhanced the envelope of an unresolved SP complex tone, while not affecting the envelope of a RP complex tone. This envelope enhancement in the SP condition was significantly correlated with the increased pitch-discrimination performance for the SP relative to the RP condition in the HI listeners.
机译:生理研究表明,噪声诱发的感音神经性听力损失(SNHL)增强了听神经纤维中包膜编码的幅度。由于假定未解析的复杂音调的音调编码依赖于时间包络编码机制,因此本研究调查了SNHL收听者的音调区分性能。针对正弦相位(SP)和随机相位(RP)的复合音调,获得了14个正常听力(NH)和10个听力受损(HI)听众的音高辨别阈值。当所有谐波均未解决时,HI监听器的平均表现比RP条件下的NH监听器差,但与SP条件下的NH监听器相似。与NH监听器相比,HI中SP相对于RP条件(F0DL比)的音高区分性能的提高明显更大。在相同的听众中估计了耳蜗压缩和听觉滤波器的带宽。耳蜗压缩的估计减少与F0DL比的增加显着相关,而与滤波器带宽没有相关性。在简化的外围模型中,频率选择性降低和压缩损失的影响被认为是包络增强的潜在因素。该模型显示,降低耳蜗压迫力可显着增强未解决的SP复合音调的包络,而不会影响RP复合音调的包络。 SP状况中的这种包络增强与HI听众中SP相对于RP状况的SP音高区分性能显着相关。

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