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首页> 外文期刊>The Journal of the Acoustical Society of America >Relationship between speech-evoked neural responses and perception of speech in noise in older adults
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Relationship between speech-evoked neural responses and perception of speech in noise in older adults

机译:老年人语言诱发神经响应与言语言语的关系

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摘要

Speech-in-noise (SPIN) perception involves neural encoding of temporal acoustic cues. Cues include temporal fine structure (TFS) and envelopes that modulate at syllable (Slow-rate ENV) and fundamental frequency (F-0-rate ENV) rates. Here the relationship between speech-evoked neural responses to these cues and SPIN perception was investigated in older adults. Theta-band phase-locking values (PLVs) that reflect cortical sensitivity to Slow-rate ENV and peripheral/brainstem frequency-following responses phase-locked to F-0-rate ENV (FFRENV_F0) and TFS (FFRTFS) were measured from scalp-electroencephalography responses to a repeated speech syllable in steady-state speech-shaped noise (SpN) and 16-speaker babble noise (BbN). The results showed that (1) SPIN performance and PLVs were significantly higher under SpN than BbN, implying differential cortical encoding may serve as the neural mechanism of SPIN performance that varies as a function of noise types; (2) PLVs and FFRTFS at resolved harmonics were significantly related to good SPIN performance, supporting the importance of phase-locked neural encoding of Slow-rate ENV and TFS of resolved harmonics during SPIN perception; (3) FFRENV_F0 was not associated to SPIN performance until audiometric threshold was controlled for, indicating that hearing loss should be carefully controlled when studying the role of neural encoding of F-0-rate ENV. Implications are drawn with respect to fitting auditory prostheses. (C) 2018 Acoustical Society of America.
机译:噪声语音(旋转)感知涉及时间声学线索的神经编码。提示包括时间细结构(TFS)和信封,其在音节(慢速env)和基频(F-0率env)速率下调制。在这里,在老年人中研究了语音诱发的神经响应与旋转感知的关系。 θ带锁相值(PLV)反映了对慢速env和外围/脑干频率的延迟锁定到f-0速率env(ffrenv_f0)和tfs(ffrtfs)的响应的慢速env和外围/脑干频率跟随响应的响应脑电图对稳态语音噪声(SPN)和16扬声器禁止噪声(BBN)的重复语音音节响应。结果表明,(1)SPN的旋转性能和PLV显着高于BBN,暗示差动皮质编码可以作为旋转性能的神经机制,其变化为噪声类型的函数。 (2)解析谐波的PLV和FFRTFS与良好的旋转性能显着相关,支持在旋转感知期间锁定神经编码阶段循环env和TFS的阶段锁定神经编码的重要性; (3)FFRENV_F0与旋转性能无关,直到控制听力阈值,表明在研究神经编码F-0速率ENV的角色时应仔细控制听力损失。关于装配听觉假体的影响是绘制的。 (c)2018年声学学会。

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