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手机暴露对瞬态诱发耳声发射时频精细结构的影响。

Effects of mobile phone exposure on time frequency fine structure of transiently evoked otoacoustic emissions.

作者信息

Paglialonga Alessia, Tognola Gabriella, Parazzini Marta, Lutman Mark E, Bell Steven L, Thuroczy Gyorgy, Ravazzani Paolo

机构信息

Institute of Biomedical Engineering ISIB, Italian National Research Council, Milan, Italy.

出版信息

J Acoust Soc Am. 2007 Oct;122(4):2174-82. doi: 10.1121/1.2773944.

Abstract

Mobile phones have become very commonly used worldwide within a short period of time. To date there is only limited knowledge about interaction between electromagnetic fields (EMFs) emitted by mobile phones and the auditory function. Moreover, there is widespread concern that there may be potential for harm. The aim of this study was to assess potential subtle changes in cochlear function by measuring the temporal and spectral fine structure of transiently evoked otoacoustic emissions (TEOAE) in normal hearing subjects after exposure to EMFs emitted by Global System for Mobile Communication (GSM) mobile phones. TEOAEs were recorded in 27 healthy young adults before and after 10 min of real or sham exposure in a double-blind design. TEOAE data were analyzed both globally (broadband analysis) and using the Wavelet Transform (analysis of the time-frequency fine structure). The broadband analysis revealed no significant effect on TEOAEs related to exposure, confirming results of previous studies; in addition, no significant change was detected in the analysis of the elementary wavelet components, suggesting that the temporal and spectral fine structure of TEOAEs is not affected by 10 min exposure to low-intensity EMFs emitted by GSM mobile phones.

摘要

在短时间内,手机已在全球范围内变得非常普遍。迄今为止,关于手机发出的电磁场(EMF)与听觉功能之间的相互作用,人们了解的还很有限。此外,人们普遍担心可能存在潜在危害。本研究的目的是通过测量正常听力受试者在暴露于全球移动通信系统(GSM)手机发出的电磁场后瞬态诱发耳声发射(TEOAE)的时间和频谱精细结构,来评估耳蜗功能可能存在的细微变化。采用双盲设计,在27名健康年轻成年人进行10分钟真实或模拟暴露前后记录TEOAE。对TEOAE数据进行了整体分析(宽带分析)和使用小波变换(时频精细结构分析)。宽带分析显示,暴露对TEOAE没有显著影响,这证实了先前研究的结果;此外,在基本小波成分分析中未检测到显著变化,这表明TEOAE的时间和频谱精细结构不受GSM手机发出的低强度电磁场10分钟暴露的影响。

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