Halgamuge Malka N, Yak See Kye, Eberhardt Jacob L
Department of Electrical and Electronics Engineering, University of Melbourne, Victoria, Australia.
Bioelectromagnetics. 2015 Feb;36(2):87-95. doi: 10.1002/BEM.21890. Epub 2015 Jan 21.
The aim of this work was to study possible effects of environmental radiation pollution on plants. The association between cellular telephone (short duration, higher amplitude) and base station (long duration, very low amplitude) radiation exposure and the growth rate of soybean (Glycine max) seedlings was investigated. Soybean seedlings, pre-grown for 4 days, were exposed in a gigahertz transverse electromagnetic cell for 2 h to global system for mobile communication (GSM) mobile phone pulsed radiation or continuous wave (CW) radiation at 900 MHz with amplitudes of 5.7 and 41 V m(-1) , and outgrowth was studied one week after exposure. The exposure to higher amplitude (41 V m(-1)) GSM radiation resulted in diminished outgrowth of the epicotyl. The exposure to lower amplitude (5.7 V m(-1)) GSM radiation did not influence outgrowth of epicotyl, hypocotyls, or roots. The exposure to higher amplitude CW radiation resulted in reduced outgrowth of the roots whereas lower CW exposure resulted in a reduced outgrowth of the hypocotyl. Soybean seedlings were also exposed for 5 days to an extremely low level of radiation (GSM 900 MHz, 0.56 V m(-1)) and outgrowth was studied 2 days later. Growth of epicotyl and hypocotyl was found to be reduced, whereas the outgrowth of roots was stimulated. Our findings indicate that the observed effects were significantly dependent on field strength as well as amplitude modulation of the applied field.
这项工作的目的是研究环境辐射污染对植物可能产生的影响。研究了蜂窝电话(短持续时间、高振幅)和基站(长持续时间、极低振幅)辐射暴露与大豆(Glycine max)幼苗生长速率之间的关联。预先生长4天的大豆幼苗在千兆赫兹横向电磁室中暴露于全球移动通信系统(GSM)手机脉冲辐射或900兆赫兹连续波(CW)辐射2小时,辐射振幅分别为5.7和41伏/米,暴露一周后研究其生长情况。暴露于高振幅(41伏/米)的GSM辐射导致上胚轴生长减弱。暴露于低振幅(5.7伏/米)的GSM辐射对上胚轴、下胚轴或根的生长没有影响。暴露于高振幅CW辐射导致根的生长减少,而低振幅CW辐射导致下胚轴的生长减少。大豆幼苗还暴露于极低水平的辐射(GSM 900兆赫兹,0.56伏/米)5天,两天后研究其生长情况。发现上胚轴和下胚轴的生长减少,而根的生长受到刺激。我们的研究结果表明,观察到的影响显著取决于场强以及所施加场的振幅调制。
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