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在随机图形-背景感知方面的表现因语音噪声识别和工作记忆能力的个体差异而有所不同。

Performance on stochastic figure-ground perception varies with individual differences in speech-in-noise recognition and working memory capacity.

机构信息

Institute for Systems Research, University of Maryland, College Park, Maryland 20742, USA.

Audiology and Speech Pathology Center, Walter Reed National Military Medical Center, Bethesda, Maryland 20889, USA.

出版信息

J Acoust Soc Am. 2023 Jan;153(1):286. doi: 10.1121/10.0016756.

Abstract

Speech recognition in noisy environments can be challenging and requires listeners to accurately segregate a target speaker from irrelevant background noise. Stochastic figure-ground (SFG) tasks in which temporally coherent inharmonic pure-tones must be identified from a background have been used to probe the non-linguistic auditory stream segregation processes important for speech-in-noise processing. However, little is known about the relationship between performance on SFG tasks and speech-in-noise tasks nor the individual differences that may modulate such relationships. In this study, 37 younger normal-hearing adults performed an SFG task with target figure chords consisting of four, six, eight, or ten temporally coherent tones amongst a background of randomly varying tones. Stimuli were designed to be spectrally and temporally flat. An increased number of temporally coherent tones resulted in higher accuracy and faster reaction times (RTs). For ten target tones, faster RTs were associated with better scores on the Quick Speech-in-Noise task. Individual differences in working memory capacity and self-reported musicianship further modulated these relationships. Overall, results demonstrate that the SFG task could serve as an assessment of auditory stream segregation accuracy and RT that is sensitive to individual differences in cognitive and auditory abilities, even among younger normal-hearing adults.

摘要

在嘈杂环境中进行语音识别具有挑战性,需要听众准确地将目标说话人从无关的背景噪声中分离出来。在需要从背景中识别出具有时间相干性的不和谐纯音的随机图形-背景(SFG)任务中,已经被用于探测对于语音处理中的噪声处理很重要的非语言听觉流分离过程。然而,对于 SFG 任务和语音处理任务之间的关系,以及可能调节这种关系的个体差异,我们知之甚少。在这项研究中,37 名年轻的正常听力成年人完成了一个 SFG 任务,任务中的目标图形由四个、六个、八个或十个具有时间相干性的音调组成,背景中则是随机变化的音调。刺激物被设计为频谱和时间上平坦的。随着时间上相干音调数量的增加,准确性提高,反应时间(RT)缩短。对于十个目标音调,更快的 RT 与在快速语音噪声测试中的更好分数相关。工作记忆能力和自我报告的音乐能力的个体差异进一步调节了这些关系。总的来说,结果表明,SFG 任务可以作为听觉流分离准确性和 RT 的评估方法,对认知和听觉能力的个体差异敏感,即使是在年轻的正常听力成年人中也是如此。

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