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

1694 studies in total
  1. 736 studies
  2. 560 studies
  3. 510 studies
  4. 220 studies
  5. 204 studies
  6. 118 studies

DNA, proteins, and oxidative stress

560 studies in total
  1. 305 studies
  2. 198 studies
  3. 118 studies
  4. 42 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Levengood WC 1987 invertebrate, <i>Drosophila melanogaster</i> - - - continuous digital mobile phone, mobile communications, static magnetic field
Syldona M 2007 DNA/RNA DNA conformation - - 5 min mobile communications, mobile phone
Yadav AS et al. 2008 human nuclear anomalies - - - mobile communications, mobile phone, not extractable
Gandhi G et al. 2005 human, whole body, partial body: head DNA damage (chromosome aberration and micronuclei formation) - 0.1–1.92 W/kg 2.16 hr/day - 16 hr/day for up to 5 years mobile phone, mobile communications
Hintzsche H et al. 2010 human frequency of micronuclei - - up to 15 hr/week for up to 10 years and more mobile phone, mobile communications, microwaves, not extractable
Yildirim MS et al. 2010 human, whole body micronucleus formation and chromosome aberrations in lymphocytes - - - mobile phone base station, mobile communications, low level microwaves, not extractable
Liu C et al. 2013 intact cell/cell culture, GC-2 cells (murine spermatocyte-derived cell line) DNA damage - 0.585–0.813 W/kg - mobile phone, GSM, mobile communications, RF field, PW pulsed wave, co-exposure
Gulati S et al. 2016 - - - - - mobile phone base station, mobile communications
Daroit NB et al. 2015 - - - - - mobile phone, mobile communications
Banerjee S et al. 2016 human, partial body: head genotoxicity in oral mucosa - - mobile use for less than 5 years and less than 3 hours a week mobile phone, GSM, CDMA, mobile communications
Mokarram P et al. 2017 animal, rat/Sprague Dawley - - - - mobile phone, GSM, mobile communications
de Oliveira FM et al. 2017 human - - - - mobile communications, mobile phone
D'Silva MH et al. 2017 animal, chicken embryos/Gallus domesticus (eggs) - - - - mobile communications, mobile phone, UHF fields
de Oliveira FM et al. 2017 human - - - - mobile communications, mobile phone
Akdag M et al. 2018 human - - - - mobile communications, mobile phone
Vanishree M et al. 2018 human - - - - mobile communications, mobile phone
Jooyan N et al. 2019 intact cell/cell culture, CHO (Chinese hamster ovary) cells - - - - mobile communications, GSM
Schuermann D et al. 2020 intact cell/cell culture - - - - mobile communications, mobile phone, GSM, UMTS, W-LAN/WiFi, RF field, EAS/RFID
Panagopoulos DJ 2020 intact cell/cell culture, human lymphocytes - - - - mobile communications, UMTS, mobile phone, also other exposures without EMF, co-exposure
Gandhi G et al. 2015 human - - - - mobile communications, mobile phone
D'Silva MH et al. 2021 animal, hen eggs (<i>Gallus domesticus</i> ) - - - - mobile communications, mobile phone, GSM, UMTS
Kadeh H et al. 2023 human - - - - mobile communications, mobile phone
Panagopoulos DJ 2024 intact cell/cell culture, human peripheral blood lymphocytes - - - - mobile communications, mobile phone, UMTS, 4G, also other exposures without EMF, co-exposure
Sangle V et al. 2023 human - - - - mobile communications, mobile phone, GSM, CDMA
Yao K et al. 2008 intact cell/cell culture, SRA01/04-hLEC (human eye lens epithelial cells) DNA damage, intracellular reactive oxygen species formation 30–90 Hz 1–4 W/kg intermittent, 5 min on/10 min off, for 2 h digital mobile phone, GSM, mobile communications, microwaves