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首页> 外文期刊>Neuropsychologia >ERP responses to processing prosodic phrasing of sentences in amplitude modulated noise
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ERP responses to processing prosodic phrasing of sentences in amplitude modulated noise

机译:ERP对调幅噪声中句子的韵律处理的响应

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摘要

Intonation phrase boundaries (IPBs) were hypothesized to be especially difficult to process in the presence of an amplitude modulated noise masker because of a potential rhythmic competition. In an event related potential study, IPBs were presented in silence, stationary, and amplitude modulated noise. We elicited centro-parietal Closure Positive Shifts (CPS) in 23 young adults with normal hearing at IPBs in all acoustic conditions, albeit with some differences. CPS peak amplitudes were highest in stationary noise, followed by modulated noise, and lowest in silence. Both noise types elicited CPS delays, slightly more so in stationary compared to amplitude modulated noise. These data suggest that amplitude modulation is not tantamount to a rhythmic competitor for prosodic phrasing but rather supports an assumed speech perception benefit due to local release from masking. The duration of CPS time windows was, however, not only longer in noise compared to silence, but also longer for amplitude modulated compared to stationary noise. This is interpreted as support for additional processing load associated with amplitude modulation for the CPS component. Taken together, processing prosodic phrasing of sentences in amplitude modulated noise seems to involve the same issues that have been observed for the perception and processing of segmental information that are related to lexical items presented in noise: a benefit from local release from masking, even for prosodic cues, and a detrimental additional processing load that is associated with either stream segregation or signal reconstruction. (C) 2016 Elsevier Ltd. All rights reserved.
机译:据推测,由于存在潜在的节奏竞争,语调边界(IPB)在存在调幅噪声掩蔽器的情况下特别难以处理。在一项与事件相关的潜在研究中,IPB以静音,平稳和调幅的噪声形式出现。我们在所有声学条件下,在IPB听力正常的23位年轻成年人中,诱发了顶壁闭合正向移位(CPS),尽管存在一些差异。 CPS峰值幅度在固定噪声中最高,其次是调制噪声,在静音中最低。两种噪声都引起CPS延迟,与调幅噪声相比,静态噪声要稍多一些。这些数据表明,调幅并不等同于韵律短语的节奏竞争者,而是由于掩蔽的局部释放而支持假定的语音感知优势。但是,CPS时间窗的持续时间不仅在噪声方面比静音更长,而且在振幅调制方面比平稳噪声更长。这被解释为对与CPS组件的幅度调制相关的附加处理负载的支持。综上所述,在调幅噪声中处理句子的韵律短语似乎涉及到与感知和处理与噪声中出现的词汇项相关的分段信息所观察到的相同问题:从掩蔽的局部释放中受益,甚至对于韵律提示,以及与流隔离或信号重建相关的有害附加处理负载。 (C)2016 Elsevier Ltd.保留所有权利。

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