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黑暗和环境光条件下助听器使用者中降噪对听觉努力的眼部标志物的影响

Influence of Noise Reduction on Ocular Markers of Listening Effort in Hearing Aid Users in Darkness and Ambient Light.

作者信息

Herrmann Jessica, Fiedler Lorenz, Wendt Dorothea, Santurette Sébastien, Husstedt Hendrik, Jürgens Tim

机构信息

Institute of Acoustics, Technische Hochschule Lübeck (University of Applied Sciences Lübeck), Lübeck, Germany.

Eriksholm Research Centre, Oticon A/S, Snekkersten, Denmark.

出版信息

Trends Hear. 2025 Jan-Dec;29:23312165251336652. doi: 10.1177/23312165251336652. Epub 2025 Apr 29.

Abstract

The combination of directional microphones and noise reduction (DIR + NR) in hearing aids offers substantial improvement in speech intelligibility and reduction in listening effort in spatial acoustic scenarios. Pupil dilation can be used to infer ocular markers of listening effort. However, pupillometry is also known to crucially depend on luminance. The present study investigates the effects of a state-of-the-art DIR + NR algorithm (implemented in commercial hearing aids) on pupil dilation of hearing aid users both in darkness and ambient light conditions. Speech intelligibility and peak pupil dilations (PPDs) of 29 experienced hearing aid users were measured during a spatial speech-in-noise-task at a signal-to-noise ratio (SNR) matching the individual's speech reception threshold. While speech intelligibility improvements due to DIR + NR were substantial (about 35 percentage points) and independent of luminance, PPDs were only significantly reduced due to DIR + NR in ambient light, but not in darkness. This finding suggests that the reduction in PPD due to DIR + NR (most likely through improvement in SNR) is dependent on luminance and should be interpreted with caution as a marker for listening effort. Relations of reduction in PPD due to DIR + NR in ambient light to subjectively reported long-term fatigue, age, and pure-tone average were not statistically significant, which indicates that all patients benefitted similarly in listening effort from DIR + NR, irrespective of these patient-specific factors. In conclusion, careful control of luminance needs to be taken in hearing aid studies inferring listening effort from pupillometry data.

摘要

助听器中定向麦克风与降噪功能(DIR + NR)的结合在空间声学场景下能显著提高言语可懂度并减少聆听努力。瞳孔扩张可用于推断聆听努力的眼部指标。然而,已知瞳孔测量也严重依赖于亮度。本研究调查了一种先进的DIR + NR算法(应用于商业助听器)在黑暗和环境光条件下对助听器使用者瞳孔扩张的影响。在空间噪声言语任务中,以与个体言语接受阈值匹配的信噪比(SNR)测量了29名经验丰富的助听器使用者的言语可懂度和峰值瞳孔扩张(PPD)。虽然DIR + NR带来的言语可懂度提升显著(约35个百分点)且与亮度无关,但PPD仅在环境光下因DIR + NR而显著降低,在黑暗中则不然。这一发现表明,DIR + NR导致的PPD降低(很可能是通过改善SNR)取决于亮度,作为聆听努力的指标时应谨慎解读。在环境光下DIR + NR导致的PPD降低与主观报告的长期疲劳、年龄和纯音平均值之间的关系无统计学意义,这表明所有患者在聆听努力方面从DIR + NR中获得的益处相似,与这些患者特定因素无关。总之,在从瞳孔测量数据推断聆听努力的助听器研究中,需要仔细控制亮度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9744/12041677/f9deacfaa106/10.1177_23312165251336652-fig1.jpg

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