Literature DB >> 16037958

Effects of 900 MHz electromagnetic fields exposure on cochlear cells' functionality in rats: evaluation of distortion product otoacoustic emissions.

Paolo Galloni1, Giorgio Alfonso Lovisolo, Sergio Mancini, Marta Parazzini, Rosanna Pinto, Marta Piscitelli, Paolo Ravazzani, Carmela Marino.   

Abstract

In recent years, the widespread use of mobile phones has been accompanied by public debate about possible adverse consequences on human health. The auditory system is a major target of exposure to electromagnetic fields (EMF) emitted by cellular telephones; the aim of this study was the evaluation of possible effects of cellular phone-like emissions on the functionality of rat's cochlea. Distortion Products OtoAcoustic Emission (DPOAE) amplitude was selected as cochlea's outer hair cells (OHC) status indicator. A number of protocols, including different frequencies (the lower ones in rat's cochlea sensitivity spectrum), intensities and periods of exposure, were used; tests were carried out before, during and after the period of treatment. No significant variation due to exposure to microwaves has been evidenced. (c) 2005 Wiley-Liss, Inc.

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Year:  2005        PMID: 16037958     DOI: 10.1002/bem.20127

Source DB:  PubMed          Journal:  Bioelectromagnetics        ISSN: 0197-8462            Impact factor:   2.010


  3 in total

1.  Sensitivity of spiral ganglion neurons to damage caused by mobile phone electromagnetic radiation will increase in lipopolysaccharide-induced inflammation in vitro model.

Authors:  Wen-Qi Zuo; Yu-Juan Hu; Yang Yang; Xue-Yan Zhao; Yuan-Yuan Zhang; Wen Kong; Wei-Jia Kong
Journal:  J Neuroinflammation       Date:  2015-05-29       Impact factor: 8.322

2.  The Effects of Mobile Phone Radiofrequency Radiation on Cochlear Stria Marginal Cells in Sprague-Dawley Rats.

Authors:  Honghong Yang; Yuanyuan Zhang; Zhihai Wang; Shixun Zhong; Guohua Hu; Wenqi Zuo
Journal:  Bioelectromagnetics       Date:  2020-02-18       Impact factor: 2.010

3.  Exposure to 1800 MHz LTE electromagnetic fields under proinflammatory conditions decreases the response strength and increases the acoustic threshold of auditory cortical neurons.

Authors:  Samira Souffi; Julie Lameth; Quentin Gaucher; Délia Arnaud-Cormos; Philippe Lévêque; Jean-Marc Edeline; Michel Mallat
Journal:  Sci Rep       Date:  2022-03-08       Impact factor: 4.379

  3 in total

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