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

1696 studies in total
  1. 738 studies
  2. 561 studies
  3. 511 studies
  4. 220 studies
  5. 204 studies
  6. 118 studies

Brain

511 studies in total
  1. 153 studies
  2. 148 studies
  3. 142 studies
  4. 79 studies
  5. 35 studies
  6. 35 studies
  7. 18 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Bas O et al. 2013 - - 900 MHz - - mobile phone, mobile communications
Odaci E et al. 2016 - - - - - mobile phone, mobile communications, RF field
Ikinci A et al. 2016 - - 900 MHz - - mobile phone, mobile communications
Kim JH et al. 2016 - - 835 MHz - - mobile phone, mobile communications
Petitdant N et al. 2016 - - 900 MHz - - mobile phone, GSM, mobile communications, RF field, PW pulsed wave, co-exposure
Zhou Z et al. 2016 - - - - - mobile phone, mobile communications
Kerimoglu G et al. 2016 - - 900 MHz - - mobile phone, mobile communications, RF field
Kerimoglu G et al. 2016 - - 900 MHz - - mobile phone, mobile communications
Xu F et al. 2016 - - 1,800 MHz - - mobile phone, mobile communications
Barthélémy A et al. 2016 - - 900 MHz - - mobile phone, GSM, mobile communications, RF field
Kim JH et al. 2019 animal, C57BL/6 mouse - 835 MHz - - mobile phone, mobile communications
Qin TZ et al. 2024 animal, C57BL/6 mouse - 4.9 GHz - - 5G, mobile communications, microwaves
Qin T et al. 2023 animal, C57BL/6 mouse - - - - 5G, mobile communications, RF field, electric field, signals/pulses, co-exposure
Zhou GQ et al. 2024 animal, C57BL/6 mouse - 3.5 GHz - - mobile communications, 5G, PW pulsed wave
Jeong YJ et al. 2020 animal, C57BL/6J mouse - 1,950 MHz - - mobile communications, W-CDMA, RF field
Islam MS et al. 2023 animal, chicken eggs (Indian River) - 2,100 MHz - - mobile communications, mobile phone, 4G
Umur AS et al. 2013 animal, chicken embryos/White Leghorn (eggs), whole body development of the neural tube - 0.77 W/kg standby mode for 30, 48 or 72 hours mobile phone, mobile communications
Woelders H et al. 2017 animal, chicken/Leghorn (eggs), whole body embryonic development 1.8 GHz 0.38–0.45 mW/kg 22 days mobile communications, GSM, UMTS, TDMA, FDMA, RF field, DECT, W-LAN/WiFi
Yang H et al. 2022 animal, guinea pig, whole body - 3,500 MHz - - mobile communications, 5G, CW continuous wave
Finnie JW et al. 2010 animal, mouse, whole body microglia activation 900 MHz 4 W/kg continuous for 60 min mobile phone, GSM, mobile communications, PW pulsed wave
Arendash GW et al. 2012 animal, mouse/56.25% C57, 12.5% B6, 18.75% SJL, and 12.5% Swiss-Webster - 918 MHz 0.25–1.05 W/kg 2 h/day (early morning and late afternoon) for 2 months (study I) or 12 days (study II) mobile phone, GSM, mobile communications, PW pulsed wave, therapeutic/medical device
Tohidi FZ et al. 2015 animal, mouse/BALB/c - - - - mobile communications, RF field
Zymantiene J et al. 2020 animal, mouse/BALB/c - 1,350–1,375 MHz - - mobile communications, mobile phone
Tohidi FZ et al. 2021 animal, mouse/BALB/c - 900–1,800 MHz - - mobile communications, GSM, CDMA, mobile phone
Zymantiene J et al. 2019 animal, mouse/BALB/c - 850–1,900 MHz - - mobile communications, mobile phone, GSM