ESTONIAN ACADEMY
PUBLISHERS
eesti teaduste
akadeemia kirjastus
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Estonian Journal of Engineering
Modulated low-level electromagnetic field effects on EEG visual event-related potentials; pp. 124–137
PDF | doi: 10.3176/eng.2008.2.03

Authors
Jaanus Lass, Kristjan Kruusing, Hiie Hinrikus
Abstract
The aim of this study was experimental investigation of the effects of low-level modulated microwaves on the human central nervous system function using electroencephalo­graphic (EEG) visual event-related potentials. Thirty healthy volunteers were exposed and sham-exposed to the electromagnetic field (EMF) (450 MHz, 0.16 mW/cm2) modulated at 21 Hz frequency during visual oddball tasks. During the task the participants had to distinguish infrequent target stimuli from frequent standard stimuli. The task consisted of detecting visually presented random ball-shape stimuli of which 25% were target and 75% standard stimuli, in one task the subject was EMF-exposed and in another task sham-exposed. One task lasted 10 min, during the exposed task the EMF was switched on and off in one-minute intervals, so that the participants performed half of the task in exposed condition (EMF ON) and half of the task without the exposure (EMF OFF). The sham-exposed task was identical to the exposed task, except that the EMF generator was switched off all the time. Three-channel EEG was recorded during all the tasks using electrodes Fz, Pz and Cz. For analysis of the EEG event-related responses, the channel Pz was used. The EEG responses of a task were grouped into four different categories, taking into account the EMF exposure condition (ON, OFF) during the response and the response type (standard, target). The responses were averaged by categories; finally we had four types of average EEG event-related potentials for a task for every subject. The EMF ON and OFF potentials were compared pairwise. The hypothesis was that the EEG event-related potential component latencies, amplitudes and reaction times (RT) of the subjects to the target stimuli are not different in EMF ON and EMF OFF conditions during the same task. There were no statistically significant differences in responses in sham-exposed tasks, neither in standard nor in target-response components. In the exposed task the group mean N100 amplitude (measured from standard response) was –3.41 ± 4.54 µV in EMF ON category and –2.50 ± 4.71 µV in EMF OFF category; this difference was statistically highly significant (p < 0.00009). Differences in amplitudes, latencies and in RT between EMF ON and OFF conditions of other components were not significant. It is concluded that the modulated microwave effect has stronger impact on early (sensory) components of EEG visual event-related potentials compared with later stages of visual information processing during the oddball task.
References

  1. Preece, A. W., Iwi, G., Davies-Smith, A., Wesnes, K., Butler, S., Lim, E. and Varey, A. Effect of a 915-MHz simulated mobile phone signal on cognitive function in man. Int. J. Radiat. Biol., 1999, 75, 447–456.
doi:10.1080/095530099140375

  2. Preece, A. W., Goodfellow, S., Wright, M. G., Butler, S. R., Dunn, E. J., Johnson, Y., Mankte­low, T. C. and Wesnes, K. Effect of 902 MHz mobile phone transmission on cognitive function in children. Bioelectromagnetics, 2005, Suppl 7, S138–143.
doi:10.1002/bem.20128

  3. Lee, T. M., Ho, S. M., Tsang, L. Y., Yang, S. H., Li, L. S., Chan, C. C. and Yang, S. Y. Effect on human attention of exposure to the electromagnetic field emitted by mobile phones. Neuroreport, 2001, 12, 729–731.
doi:10.1097/00001756-200103260-00023

  4. Lee, T. M., Lam, P. K., Yee, L. T. and Chan, C. C. The effect of the duration of exposure to the electromagnetic field emitted by mobile phones on human attention. Neuroreport, 2003, 14, 1361–1364.
doi:10.1097/00001756-200307180-00016

  5. Koivisto, M., Krause, C. M., Revonsuo, A., Laine, M. and Hämäläinen, H. The effects of electromagnetic field emitted by GSM phones on working memory. Neuroreport, 2000, 11, 1641–1643.
doi:10.1097/00001756-200006050-00009

  6. Keetley, V., Wood, A. W., Spong, J. and Stough, C. Neuropsychological sequelae of digital mobile phone exposure in humans. Neuropsychologia, 2006, 44, 1843–1848.
doi:10.1016/j.neuropsychologia.2006.03.002

  7. Krause, C. M., Sillanmäki, L., Koivisto, M., Häggqvist, A., Saarela, C., Revonsuo, A., Laine, M. and Hämäläinen, H. Effects of electromagnetic field emitted by cellular phones on the EEG during a memory task. Neuroreport, 2000, 11, 761–764.
doi:10.1097/00001756-200003200-00021

  8. Krause, C. M., Sillanmäki, L., Koivisto, M., Häggqvist, A., Saarela, C., Revonsuo, A., Laine, M. and Hämäläinen, H. Effects of electromagnetic fields emitted by cellular phones on the electroencephalogram during a visual working memory task. Int. J. Radiat. Biol., 2000, 76, 1659–1667.
doi:10.1080/09553000050201154

  9. Haarala, C., Bjornberg, L., Ek, M., Laine, M., Revonsuo, A., Koivisto, M. and Hämäläinen, H. Effect of a 902 MHz electromagnetic field emitted by mobile phones on human cognitive function: A replication study. Bioelectromagnetics, 2003, 24, 283–288.
doi:10.1002/bem.10105

10. Haarala, C., Bjornberg, L., Laine, M., Revonsuo, A., Koivisto, M. and Hämäläinen, H. 902 MHz mobile phone does not affect short-term memory in humans. Bioelectro­magnetics, 2004, 25, 452–456.
doi:10.1002/bem.20014

11. Haarala, C., Bergman, M., Laine, M., Revonsuo, A., Koivisto, M. and Hämäläinen, H. Electro­magnetic field emitted by 902 MHz mobile phones shows no effects on children’s cognitive function. Bioelectromagnetics, 2005, Suppl 7, S144–150.
doi:10.1002/bem.20142

12. Krause, C. M., Björnberg, C. H., Pesonen, M., Hulten, A., Liesivuori, T., Koivisto, M., Revon­suo, A., Laine, M. and Hämäläinen, H. Mobile phone effects on children’s event-related oscillatory EEG during an auditory memory task. Int. J. Radiat. Biol., 2006, 82, 443–450.
doi:10.1080/09553000600840922

13. Krause, C. M., Pesonen, M., Haarala, C., Björnberg, L. and Hämäläinen, H. Effects of pulsed and continuous wave 902 MHz mobile phone exposure on brain oscillatory activity during cognitive processing. Bioelectromagnetics, 2007, 28, 296–308.
doi:10.1002/bem.20300

14. Hamblin, D. L., Wood, A. W., Croft, R. J. and Stough, C. Examining the effects of electro­magnetic fields emitted by GSM mobile phones on human event-related potentials and performance during an auditory task. Clin. Neurophysiol., 2004, 115,171–178.
doi:10.1016/S1388-2457(03)00313-4

15. Hamblin, D. L., Croft, R. J., Wood, A. W., Stough, C. and Spong, J. The sensitivity of human event-related potentials and reaction time to mobile phone emitted electromagnetic fields. Bioelectromagnetics, 2006, 27, 265–273.
doi:10.1002/bem.20209

16. Papageorgiou, C. C., Nanou, E. D., Tsiafakis, V. G., Kapareliotis, E., Kontoangelos, K. A., Capsalis, C. N., Rabavilas, A. D. and Soldatos, C. R. Acute mobile phone effects on pre-attentive operation. Neurosci. Lett., 2006, 397, 99–103.
doi:10.1016/j.neulet.2005.12.001

17. Lass, J., Tuulik, V., Ferenets, R., Riisalo, R. and Hinrikus, H. Effects of 7 Hz-modulated 450 MHz electromagnetic radiation on human performance in visual memory tasks. Int. J. Radiat. Biol., 2002, 78, 937–944.
doi:10.1080/09553000210153934

18. Rodina, A., Lass, J., Riipulk, J., Bachmann, T. and Hinrikus, H. Study of effects of low level microwave field by method of face masking. Bioelectromagnetics, 2005, 26, 571–577.
doi:10.1002/bem.20131

19. Lass, J., Rodina, A., Riipulk, J., Hinrikus, H. and Bachmann, T. Are there modulated electromagnetic field effects on human conscious perception during attentional blink test? In Proc. 18th International Conference IEEE Engineering in Medicine and Biology Society, 2006, 1, 2924–2927.

20. Polich, J. Clinical application of the P300 event-related potential. Phys. Med. Rehabil. Clin., 2004, 15, 133–161.

21. Pfurtscheller, G. and Lopes da Silva, F. H. Event-related EEG/MEG synchronization and desynchronization: Basic principles. Clin. Neurophysiol., 1999, 110, 1842–1857.
doi:10.1016/S1388-2457(99)00141-8

22. Semlitsch, H. V., Anderer, P., Schuster, P. and Presslich, O. A solution for reliable and valid reduction of ocular artifacts, applied to the P300 ERP. Psychophysiology, 1986, 23, 695–703.
doi:10.1111/j.1469-8986.1986.tb00696.x

23. Bachmann, M., Lass, J., Kalda, J., Sakki, M., Tomson, R., Tuulik, V. and Hinrikus, H. Integration of differences in EEG analysis reveals changes in human EEG caused by microwave. In Proc. 18th International Conference IEEE Engineering in Medicine and Biology Society, 2006, 1, 1597–1600.

24. Hinrikus, H., Bachmann, M., Lass, J., Tomson, R. and Tuulik, V. Effect of 7, 14 and 21 Hz modulated 450 MHz microwave radiation on human electroencephalographic rhythms. Int. J. Radiat. Biol., 2008, 84, 69–79.
doi:10.1080/09553000701691679

25. Rubljova, J., Bachmann, M., Lass, J., Tomson, R., Tuulik, V. and Hinrikus, H. Adaptation of human brain bioelectrical activity to modulated 450 MHz microwave. In Proc. 29th Annual International Conference of the IEEE Engineering in Medicine and Biology Society, Lyon, 2007, 4747–4750.
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