Study overviews

Mobile phone related articles are

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 mobile communications

1743 studies in total
  1. 770 studies
  2. 584 studies
  3. 519 studies
  4. 228 studies
  5. 208 studies
  6. 118 studies

Health

770 studies in total
  1. 157 studies
  2. 95 studies
  3. 86 studies
  4. 84 studies
  5. 80 studies
  6. 62 studies
  7. 59 studies
  8. 55 studies
  9. 54 studies
  10. 48 studies
  11. 34 studies
  12. 28 studies
  13. 26 studies
  14. 19 studies
  15. 16 studies
  16. 11 studies
  17. 9 studies
  18. 4 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Tsybulin O et al. 2016 embryo homogenates, bovine erythrocyte solution, animal, Japanese quail embryos, whole body oxidative stress in Japanese quail embryos and involved enzymes <i>in vitro</i> 900 MHz 0.17 mW/kg intermittent (48 s (c?) on/12 s off) for 158 hours mobile phone, GSM, mobile communications, co-exposure
Luo Q et al. 2013 human protein expression in chorionic villous tissue 900 MHz 1.46–8.8 W/kg continuous for 20 min. (according to "materials and methods" section) or 1 h (according to abstract)? mobile phone, GSM, mobile communications
Bektas H et al. 2018 human - - - - mobile communications, mobile phone
Bektas H et al. 2021 human - 900–1,800 MHz - - mobile communications, mobile phone, GSM
Safian F et al. 2016 intact cell/cell culture, mouse/Balb/c (embryo) embryonal development and cell viability 900–1,800 MHz 0.683–0.725 W/kg 30 minutes/day for 4 days mobile phone, mobile communications
Suzuki S et al. 2017 intact cell/cell culture, sperm cells and oocytes derived from mice (B6D2F1) fertilization and embryogenesis; chromosome damage 1,950 MHz 2 W/kg 60 minutes mobile communications, mobile phone, W-CDMA
Geronikolou S et al. 2014 invertebrate, <i>Drosophila melanogaster</i>/Oregon R (adults and pupae), whole body quantity of oviposition 864.1–868.1 MHz 0.7–5 mW/kg continuous for 20 min/day for 5 days mobile phone, GSM, mobile communications, cordless phone
Margaritis LH et al. 2014 invertebrate, <i>Drosophila melanogaster</i>/Oregon-R (wildtype) and <i>Drosophila virilis</i> reproduction of <i>Drosophila spec.</i> (apoptosis in follicles; quantification of F1 pupae) 27.15 MHz 1.2 W/kg 6 or 12 minutes daily for 1 (3rd day of experiment only), or 3 days (<i>D. virilis</i>) (follicles); 6 minutes daily for 7 days (<i>D. virilis</i>) (F1 pupae) mobile phone, GSM, mobile communications, CW continuous wave, Bluetooth, DECT, W-LAN/WiFi, FM broadcast (UKW), microw. oven/heating device
Nik Abdull Halim NMH et al. 2024 invertebrate, yellow fever mosquito (<i>Aedes aegypti</i>) (eggs) - 900 MHz–18 GHz - - mobile communications, 5G, millimeter waves, RF
Klug S et al. 1997 rat embryo culture teratogenicity 150 MHz 0.2–5 W/kg continuous for 36 h digital mobile phone, mobile communications, RF