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GSM手机产生的电磁场与心率变异性

Electromagnetic fields produced by GSM cellular phones and heart rate variability.

作者信息

Parazzini Marta, Ravazzani Paolo, Tognola Gabriella, Thuróczy György, Molnar Ferenc B, Sacchettini Alessio, Ardesi Gianluca, Mainardi Luca Tommaso

机构信息

Istituto di Ingegneria Biomedica ISIB, Consiglio Nazionale delle Ricerche, Piazza Leonardo da Vinci, Milano, Italy.

出版信息

Bioelectromagnetics. 2007 Feb;28(2):122-9. doi: 10.1002/bem.20275.

Abstract

In this study, 26 healthy young volunteers were submitted to 900 MHz (2 W) GSM cellular phone exposure and to sham exposure in separate sessions. The study was designed to assess cardiac regulatory mechanism in different autonomic nervous system (ANS) states during exposure to low-intensity EMF. Rest-to-stand protocol was applied to evaluate ANS in quiet condition (rest, vagal prevalence) and after a sympathetic activation (stand). The procedure is conducted twice in a double-blind design: once with a genuine EMF exposure and once with a sham exposure (at least 24 h apart). During each session three-leads electrocardiograms were recorded and RR series extracted off-line. Time domain and frequency domain HRV parameters were calculated in every phase of the protocol and during different exposures. The analysis of the data show there was no statistically significant effect due to EMF exposure both on main (i.e., RR mean) and most of the other HRV parameters. A weak interaction between some HRV parameters (i.e., SDNN, TINN, and triangular index in time domain and LF power in frequency domain analysis) and RF exposure was observed and this effect seems to be gathered around the sympathetic response to stand.

摘要

在本研究中,26名健康的年轻志愿者在不同时段分别接受了900兆赫(2瓦)的全球移动通信系统(GSM)手机辐射以及假辐射。该研究旨在评估在低强度电磁场暴露期间,不同自主神经系统(ANS)状态下的心脏调节机制。采用从静息到站立的方案来评估安静状态(静息,迷走神经占优势)以及交感神经激活后(站立)的自主神经系统。该程序以双盲设计进行两次:一次是真正的电磁场暴露,一次是假暴露(间隔至少24小时)。在每个时段记录三导联心电图,并离线提取RR序列。在方案的每个阶段以及不同暴露期间计算时域和频域的心率变异性(HRV)参数。数据分析表明,电磁场暴露对主要参数(即RR平均值)以及大多数其他HRV参数均无统计学上的显著影响。观察到一些HRV参数(即时域中的标准差(SDNN)、三角指数(TINN)和三角指数以及频域分析中的低频功率)与射频暴露之间存在微弱的相互作用,并且这种效应似乎集中在对站立的交感神经反应周围。

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