Istituto di Ingegneria Biomedica ISIB, Consiglio Nazionale delle Ricerche, Milan, Italy.
Radiat Res. 2010 Jan;173(1):91-7. doi: 10.1667/RR1870.1.
The aim of this study, which was performed in the framework of the European project EMFnEAR, was to investigate the potential effects of Universal Mobile Telecommunications System (UMTS, also known as 3G) exposure at a high specific absorption rate (SAR) on the human auditory system. Participants were healthy young adults with no hearing or ear disorders. Auditory function was assessed immediately before and after exposure to radiofrequency (RF) radiation, and only the exposed ear was tested. Tests for the assessment of auditory function were hearing threshold level (HTL), distortion product otoacoustic emissions (DPOAE), contralateral suppression of transiently evoked otoacoustic emission (CAS effect on TEOAE), and auditory evoked potentials (AEP). The exposure consisted of speech at a typical conversational level delivered via an earphone to one ear, plus genuine or sham RF-radiation exposure obtained by an exposure system based on a patch antenna and controlled by software. Results from 73 participants did not show any consistent pattern of effects on the auditory system after a 20-min UMTS exposure at 1947 MHz at a maximum SAR over 1 g of 1.75 W/kg at a position equivalent to the cochlea. Analysis entailed a double-blind comparison of genuine and sham exposure. It is concluded that short-term UMTS exposure at this relatively high SAR does not cause measurable immediate effects on the human auditory system.
本研究旨在探讨高比吸收率(SAR)下通用移动通信系统(UMTS,也称为 3G)暴露对人体听觉系统的潜在影响,该研究是在欧洲项目 EMFnEAR 的框架内进行的。参与者为健康的年轻成年人,无听力或耳部疾病。在暴露于射频(RF)辐射前后立即评估听觉功能,并且仅测试暴露的耳朵。用于评估听觉功能的测试包括听力阈值水平(HTL)、畸变产物耳声发射(DPOAE)、瞬态诱发耳声发射的对侧抑制(TEOAE 的 CAS 效应)和听觉诱发电位(AEP)。暴露包括通过耳机向一只耳朵传递的典型会话水平的语音,以及通过基于贴片天线的暴露系统并通过软件控制获得的真实或模拟 RF 辐射暴露。在 1947 MHz 下以 1.75 W/kg 超过 1 g 的最大 SAR 进行 20 分钟 UMTS 暴露后,来自 73 名参与者的结果未显示出对听觉系统的任何一致影响模式。分析包括真实和模拟暴露的双盲比较。研究结论认为,在这种相对较高的 SAR 下进行短期 UMTS 暴露不会导致人体听觉系统可测量的即时影响。
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