Do ELF magnetic fields affect human reaction time?
- 1 January 1995
- journal article
- clinical trial
- Published by Wiley in Bioelectromagnetics
- Vol. 16 (5) , 317-323
- https://doi.org/10.1002/bem.2250160508
Abstract
Two double‐blind studies were run in an attempt to confirm the finding that a 0.2 Hz magnetic field affects simple reaction time (RT) in humans, whereas a 0.1 Hz field does not. In the first experiment, 12 volunteer subjects were exposed to a continuous 0.2 Hz, 0.1 Hz, or sham field in a fully counter‐balanced, within‐subjects design. Subjects were run singly for one condition each day over 3 consecutive days with a field strength of 1.1 mT and a daily exposure duration of 5 min. Neither magnetic field had any effect on RT at any time during the exposure. One condition of a second study, using a new group of 24 volunteer subjects, also failed to find any field effects at 0.2 Hz. Additionally, the second study failed to show any effects when the frequency, flux density, and field orientation were set according to parametric resonance theory. It is suggested that, although ELF magnetic field effects on human behaviour may be elusive, future research can improve detection rates by paying greater attention to reducing error variance and increasing statistical power.Keywords
This publication has 23 references indexed in Scilit:
- Psychological Studies in Nonionizing Electromagnetic Energy ResearchThe Journal of General Psychology, 1993
- Experimental search for combined AC and DC magnetic field effects on ion channelsBioelectromagnetics, 1993
- Time‐varying and static magnetic fields act in combination to alter calcium signal transduction in the lymphocyteFEBS Letters, 1992
- A replication study of human exposure to 60‐Hz fields: Effects on neurobehavioral measuresBioelectromagnetics, 1992
- Minireview biological effects of magnetic fieldsLife Sciences, 1991
- Biological effects of low-level low-frequency electric and magnetic fieldsIEEE Transactions on Education, 1991
- Possible mechanism for the influence of weak magnetic fields on biological systemsBioelectromagnetics, 1991
- Importance of alignment between local DC magnetic field and an oscillating magnetic field in responses of brain tissue in vitro and in vivoBioelectromagnetics, 1990
- Calcium and Potassium Cyclotron Resonance Curves and Harmonics in Diatoms (A.Coeffeaformis)Journal of Bioelectricity, 1987
- Effect of Magnetic Fields on Reaction Time PerformanceNature, 1967