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感音神经性听力损失对选择性注意期间竞争语音的皮层同步的影响。

Effects of Sensorineural Hearing Loss on Cortical Synchronization to Competing Speech during Selective Attention.

机构信息

Hearing Systems Section, Department of Health Technology, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark, and.

Danish Research Centre for Magnetic Resonance, Centre for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Hvidovre, DK-2650 Hvidovre, Denmark.

出版信息

J Neurosci. 2020 Mar 18;40(12):2562-2572. doi: 10.1523/JNEUROSCI.1936-19.2020. Epub 2020 Feb 24.

Abstract

When selectively attending to a speech stream in multi-talker scenarios, low-frequency cortical activity is known to synchronize selectively to fluctuations in the attended speech signal. Older listeners with age-related sensorineural hearing loss (presbycusis) often struggle to understand speech in such situations, even when wearing a hearing aid. Yet, it is unclear whether a peripheral hearing loss degrades the attentional modulation of cortical speech tracking. Here, we used psychoacoustics and electroencephalography (EEG) in male and female human listeners to examine potential effects of hearing loss on EEG correlates of speech envelope synchronization in cortex. Behaviorally, older hearing-impaired (HI) listeners showed degraded speech-in-noise recognition and reduced temporal acuity compared with age-matched normal-hearing (NH) controls. During EEG recordings, we used a selective attention task with two spatially separated simultaneous speech streams where NH and HI listeners both showed high speech recognition performance. Low-frequency (<10 Hz) envelope-entrained EEG responses were enhanced in the HI listeners, both for the attended speech, but also for tone sequences modulated at slow rates (4 Hz) during passive listening. Compared with the attended speech, responses to the ignored stream were found to be reduced in both HI and NH listeners, allowing for the attended target to be classified from single-trial EEG data with similar high accuracy in the two groups. However, despite robust attention-modulated speech entrainment, the HI listeners rated the competing speech task to be more difficult. These results suggest that speech-in-noise problems experienced by older HI listeners are not necessarily associated with degraded attentional selection. People with age-related sensorineural hearing loss often struggle to follow speech in the presence of competing talkers. It is currently unclear whether hearing impairment may impair the ability to use selective attention to suppress distracting speech in situations when the distractor is well segregated from the target. Here, we report amplified envelope-entrained cortical EEG responses to attended speech and to simple tones modulated at speech rates (4 Hz) in listeners with age-related hearing loss. Critically, despite increased self-reported listening difficulties, cortical synchronization to speech mixtures was robustly modulated by selective attention in listeners with hearing loss. This allowed the attended talker to be classified from single-trial EEG responses with high accuracy in both older hearing-impaired listeners and age-matched normal-hearing controls.

摘要

当在多说话者场景中选择性地关注语音流时,已知低频皮质活动会选择性地与所关注的语音信号的波动同步。患有与年龄相关的感音神经性听力损失(presbycusis)的老年听众即使戴着助听器,在这种情况下也常常难以理解语音。然而,目前尚不清楚外围听力损失是否会降低皮质语音跟踪的注意力调节。在这里,我们使用心理物理学和脑电图(EEG)在男性和女性人类听众中检查听力损失对皮质语音包络同步脑电图相关性的潜在影响。行为上,与年龄匹配的正常听力(NH)对照组相比,年老的听力受损(HI)听众表现出语音识别受损和时间辨别力降低。在 EEG 记录期间,我们使用了具有两个空间分离的同时语音流的选择性注意任务,其中 NH 和 HI 听众都表现出较高的语音识别性能。低频(<10 Hz)包络同步 EEG 响应在 HI 听众中增强,既用于关注语音,也用于被动聆听时以较慢速率(4 Hz)调制的音调序列。与被关注的语音相比,在 HI 和 NH 听众中都发现对被忽略的语音流的响应降低,从而允许使用两个组中相似的高准确性来从单次 EEG 数据中对被关注的目标进行分类。然而,尽管存在稳健的注意力调节语音跟踪,但 HI 听众认为竞争的语音任务更困难。这些结果表明,年老的 HI 听众在噪声中听到的语音问题不一定与注意力选择受损有关。患有与年龄相关的感音神经性听力损失的人经常难以在有竞争说话者的情况下跟随语音。目前尚不清楚听力障碍是否会削弱在分散注意力的说话者与目标之间很好地分开的情况下使用选择性注意来抑制干扰性言语的能力。在这里,我们报告了在与年龄相关的听力损失的听众中,对被关注的语音和以语音速率(4 Hz)调制的简单音调的增强的包络同步皮质 EEG 响应。至关重要的是,尽管自我报告的听力困难增加,但皮质对语音混合物的同步仍可通过选择性注意在听力损失的听众中进行稳健地调节。这允许使用两种方法从单次 EEG 响应中以较高的准确性对听力受损的老年听众和年龄匹配的正常听力对照组中的被关注说话者进行分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e96a/7083526/edbc48f9c41f/zns9992023920001.jpg

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