Study overviews

Please note that a publication can be assigned to several endpoints, i.e. the sum of publications from the individual thematic points and subpoints can be greater than the total sum of actual publications.

Experimental studies on magnetic power frequency fields (50/60 Hz)

2073 studies in total
  1. 775 studies
  2. 644 studies
  3. 523 studies
  4. 418 studies
  5. 333 studies
  6. 211 studies

Health

775 studies in total
  1. 116 studies
  2. 104 studies
  3. 103 studies
  4. 90 studies
  5. 86 studies
  6. 80 studies
  7. 75 studies
  8. 66 studies
  9. 65 studies
  10. 49 studies
  11. 35 studies
  12. 29 studies
  13. 27 studies
  14. 22 studies
  15. 13 studies
  16. 8 studies
  17. 7 studies
  18. 6 studies
  19. 2 studies
  20. one study

Endocrine changes (melatonin) 75 studies in total

Authors Year Exposed system Parameters Magnetic flux density/field strength
Burchard JF et al. 2007 animal, cow/Holstein, whole body magnetic field, 50/60 Hz, power transmission line 30 µT
Mevissen M et al. 1996 animal, rat/Sprague-Dawley, whole body magnetic field, 50/60 Hz, co-exposure 50 µT
Rogers WR et al. 1995 animal, baboon (<i>Papio cynocephalus</i>), whole body electric field, magnetic field, 50/60 Hz 50–100 µT
Rogers WR et al. 1995 animal, baboon (<i>Papio cynocephalus</i>), whole body electric field, magnetic field, 50/60 Hz 50–100 µT
Bakos J et al. 2002 animal, rat/Wistar, whole body magnetic field, 50/60 Hz 50–100 µT
Brendel H et al. 2000 animal, Djungarian hamster (<i>Phodopus sungorus</i>), whole body magnetic field, 50/60 Hz, 16 2/3 Hz (train) 86 µT
Bakos J et al. 1997 animal, rat/Wistar, whole body magnetic field, 50/60 Hz 100 µT
Yellon SM 1994 animal, Djungarian hamster (<i>Phodopus sungorus</i>), whole body magnetic field, 50/60 Hz 100 µT
Truong H et al. 1996 animal, DJungarian hamster (<i>Phodopus sungorus</i>), whole body magnetic field, 50/60 Hz, co-exposure 100 µT
Yellon SM 1996 animal, Djungarian hamster (<i>Phodopus sungorus</i>), whole body magnetic field, 50/60 Hz, co-exposure 100 µT