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双侧人工耳蜗在混响环境下的双耳语音理解

Binaural Speech Understanding With Bilateral Cochlear Implants in Reverberation.

作者信息

Kokkinakis Kostas

机构信息

Speech-Language-Hearing: Sciences & Disorders, University of Kansas, Lawrence.

出版信息

Am J Audiol. 2018 Mar 8;27(1):85-94. doi: 10.1044/2017_AJA-17-0065.

Abstract

PURPOSE

The purpose of this study was to investigate whether bilateral cochlear implant (CI) listeners who are fitted with clinical processors are able to benefit from binaural advantages under reverberant conditions. Another aim of this contribution was to determine whether the magnitude of each binaural advantage observed inside a highly reverberant environment differs significantly from the magnitude measured in a near-anechoic environment.

METHOD

Ten adults with postlingual deafness who are bilateral CI users fitted with either Nucleus 5 or Nucleus 6 clinical sound processors (Cochlear Corporation) participated in this study. Speech reception thresholds were measured in sound field and 2 different reverberation conditions (0.06 and 0.6 s) as a function of the listening condition (left, right, both) and the noise spatial location (left, front, right).

RESULTS

The presence of the binaural effects of head-shadow, squelch, summation, and spatial release from masking in the 2 different reverberation conditions tested was determined using nonparametric statistical analysis. In the bilateral population tested, when the ambient reverberation time was equal to 0.6 s, results indicated strong positive effects of head-shadow and a weaker spatial release from masking advantage, whereas binaural squelch and summation contributed no statistically significant benefit to bilateral performance under this acoustic condition. These findings are consistent with those of previous studies, which have demonstrated that head-shadow yields the most pronounced advantage in noise. The finding that spatial release from masking produced little to almost no benefit in bilateral listeners is consistent with the hypothesis that additive reverberation degrades spatial cues and negatively affects binaural performance.

CONCLUSIONS

The magnitude of 4 different binaural advantages was measured on the same group of bilateral CI subjects fitted with clinical processors in 2 different reverberation conditions. The results of this work demonstrate the impeding properties of reverberation on binaural speech understanding. In addition, results indicate that CI recipients who struggle in everyday listening environments are also more likely to benefit less in highly reverberant environments from their bilateral processors.

摘要

目的

本研究旨在调查佩戴临床处理器的双侧人工耳蜗(CI)使用者在混响环境中是否能够从双耳优势中获益。本研究的另一个目的是确定在高度混响环境中观察到的每种双耳优势的程度与在近消声环境中测量的程度是否存在显著差异。

方法

十名成年语后聋患者参与了本研究,他们均为双侧CI使用者,佩戴的是Nucleus 5或Nucleus 6临床声音处理器(科利耳公司)。在声场以及两种不同混响条件(0.06秒和0.6秒)下,根据聆听条件(左、右、双耳)和噪声空间位置(左、前、右)测量言语接受阈值。

结果

使用非参数统计分析确定了在两种不同混响条件下测试的头部阴影、静噪、总和以及掩蔽空间释放的双耳效应的存在情况。在测试的双侧人群中,当环境混响时间等于0.6秒时,结果表明头部阴影有强烈的积极影响,掩蔽空间释放优势较弱,而在这种声学条件下,双耳静噪和总和对双侧表现没有统计学上的显著益处。这些发现与先前的研究结果一致,先前的研究表明头部阴影在噪声中产生最明显的优势。掩蔽空间释放在双侧聆听者中几乎没有产生益处这一发现与以下假设一致,即附加混响会降低空间线索并对双耳表现产生负面影响。

结论

在两种不同混响条件下,对同一组佩戴临床处理器的双侧CI受试者测量了四种不同双耳优势的程度。这项工作的结果证明了混响对双耳言语理解的阻碍特性。此外,结果表明在日常聆听环境中存在困难的CI接受者在高度混响环境中也更有可能从其双侧处理器中获益较少。

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