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儿童和青年的噪声环境下定位能力与双耳内侧橄榄耳蜗功能

Localization-in-noise and binaural medial olivocochlear functioning in children and young adults.

作者信息

Boothalingam Sriram, Macpherson Ewan, Allan Chris, Allen Prudence, Purcell David

机构信息

National Centre for Audiology, Western University, London, Ontario N6G 1H1, Canada.

出版信息

J Acoust Soc Am. 2016 Jan;139(1):247-62. doi: 10.1121/1.4939708.

Abstract

Children as young as 5 yr old localize sounds as accurately as adults in quiet in the frontal hemifield. However, children's ability to localize in noise and in the front/back (F/B) dimension are scantily studied. To address this, the first part of this study investigated localization-in-noise ability of children vs young adults in two maskers: broadband noise (BBN) and speech-babble (SB) at three signal-to-noise ratios: -12, -6, and 0 dB. In the second part, relationship between binaural medial olivocochlear system (MOC) function and localization-in-noise was investigated. In both studies, 21 children and 21 young adults participated. Results indicate, while children are able to differentiate sounds arriving in the F/B dimension on par with adults in quiet and in BBN, larger differences were found for SB. Accuracy of children's localization in noise (for both maskers) in the lateral plane was also poorer than adults'. Significant differences in binaural MOC interaction (mBIC; the difference between the sum of two monaural- and binaural-MOC strength) between adults and children were also found. For reasons which are not clear, adult F/B localization in BBN correlates better with mBIC while children's F/B localization in SB correlated better with binaural MOC strength.

摘要

年仅5岁的儿童在安静环境中,在额叶半视野内定位声音的准确性与成年人相当。然而,儿童在噪声环境中以及在前/后(F/B)维度上的定位能力研究较少。为了解决这个问题,本研究的第一部分调查了儿童与年轻成年人在两种掩蔽声下的噪声中定位能力:宽带噪声(BBN)和言语嘈杂声(SB),信噪比分别为-12、-6和0 dB。在第二部分中,研究了双耳内侧橄榄耳蜗系统(MOC)功能与噪声中定位之间的关系。在这两项研究中,有21名儿童和21名年轻成年人参与。结果表明,虽然儿童在安静环境中和在BBN中能够与成年人一样区分来自F/B维度的声音,但在SB中发现了更大的差异。儿童在侧面平面噪声中(两种掩蔽声下)的定位准确性也比成年人差。在成年人和儿童之间还发现了双耳MOC相互作用(mBIC;两个单耳和双耳MOC强度之和的差值)的显著差异。出于不明原因,成年人在BBN中的F/B定位与mBIC的相关性更好,而儿童在SB中的F/B定位与双耳MOC强度的相关性更好。

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