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[手机电磁场对选定中枢神经系统功能的影响:文献综述]

[Effects of electromagnetic field from cellular phones on selected central nervous system functions: a literature review].

作者信息

Bak Marek, Zmyślony Marek

机构信息

Klinika Chorób Zawodowych i Toksykologii, Instytut Medycyny Pracy im. prof. J. Nofera, Łódź.

出版信息

Med Pr. 2010;61(6):671-83.

Abstract

In the opinion of some experts, a growing emission of man-made electromagnetic fields (EMF), also known as electromagnetic is a source of continuously increasing health hazards to the general population. Due to their large number and very close proximity to the user's head, mobile phones deserve special attention. This work is intended to give a systematic review of objective studies, assessing the effects of mobile phone EMF on the functions of the central nervous system (CNS) structures. Our review shows that short exposures to mobile phone EMF, experienced by telephone users during receiving calls, do not affect the cochlear function. Effects of GSM mobile phone EMF on the conduction of neural impulses from the inner car neurons to the brainstem auditory centres have not been detected either. If Picton's principle, saying that P300 amplitude varies with the improbability of the targets and its latency varies with difficulty of discriminating the target stimulus from standard stimuli, is true, EMF changes the improbability of the targets without hindering their discrimination. Experiments with use of indirect methods do not enable unequivocal verification of EMF effects on the cognitive functions due to the CNS anatomical and functional complexity. Thus, it seems advisable to develop a model of EMF effects on the excitable brain structures at the cellular level.

摘要

一些专家认为,人为产生的电磁场(EMF)排放不断增加,也被称为电磁辐射,对普通人群的健康危害在持续加大。由于手机数量众多且与用户头部距离很近,因此值得特别关注。这项工作旨在对客观研究进行系统综述,评估手机电磁辐射对中枢神经系统(CNS)结构功能的影响。我们的综述表明,电话用户在接听电话时短时间接触手机电磁辐射,不会影响耳蜗功能。也未检测到GSM手机电磁辐射对神经冲动从内耳神经元传导至脑干听觉中枢的影响。如果皮克顿原理成立,即P300波幅随目标的不可能性而变化,其潜伏期随区分目标刺激与标准刺激的难度而变化,那么电磁辐射会改变目标的不可能性,但不会妨碍对它们的辨别。由于中枢神经系统解剖结构和功能的复杂性,使用间接方法进行的实验无法明确验证电磁辐射对认知功能的影响。因此,似乎有必要在细胞水平上建立电磁辐射对可兴奋脑结构影响的模型。

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