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

DNA, proteins, and oxidative stress

561 studies in total
  1. 306 studies
  2. 198 studies
  3. 118 studies
  4. 42 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Savchenko L et al. 2023 animal, mouse/Swiss Webster - 915 MHz - - mobile communications, RF field
Sefidbakht Y et al. 2014 intact cell/cell culture, HEK 293T cells (human embryonic kidney cells) transfected with luciferase gene luciferase enzyme activity and oxidative stress 940 MHz 0.09 W/kg continuous for up to 90 minutes mobile phone, mobile communications
Shaheen W et al. 2021 human - - - - mobile phone, mobile communications, co-exposure, also other exposures without EMF
Shahin S et al. 2017 animal, mouse/Swiss albino - 1,800 MHz - - mobile communications, mobile phone
Shahin S et al. 2018 animal, mouse/Swiss albino - 1,800 MHz - - mobile communications, mobile phone, GSM
Sharma A et al. 2019 animal, rat/ Wistar - 2,100 MHz - - mobile communications, mobile phone, microwaves
Sharma A et al. 2020 animal, rat/Wistar - 1,800 MHz - - mobile communications, RF field
Sharma A et al. 2021 animal, rat/ Wistar - 900–2,100 MHz - - mobile communications, RF field
Sharma A et al. 2024 plant, onion (<i>Allium cepa</i> L.) - 800–2,300 MHz - - mobile communications, mobile phone base station
Sharma S et al. 2020 animal, rat/ Wistar - 900 MHz - - mobile communications, RF field
Sharma S et al. 2017 animal, rat/Wistar - 900 MHz - - mobile communications, mobile phone, GSM
Sharma S et al. 2023 plant, fenugreek (<i>Trigonella foenum-graecum</i>) (seeds) - 900 MHz - - mobile communications, RF field
Sharma VP et al. 2009 plant, mung bean effects on plants: root growth and oxidative stress 900 MHz - continuous for 0.5 h, 1 h, 2 hr, 4 hr mobile phone, GSM, mobile communications
Shedid SM et al. 2019 animal, rat/albino - 950 MHz - - mobile communications, co-exposure
Shehu A et al. 2016 animal, rat/Wistar albino, whole body - 900–1,800 MHz - - mobile phone, GSM, mobile communications, co-exposure
Shivashankara AR et al. 2015 human - - - - mobile phone, mobile communications
Shokri M et al. 2020 animal, mouse/BALB/c - 900 MHz - - mobile communications, mobile phone, co-exposure
Sieron K et al. 2018 animal, rat/Wistar - 900 MHz - - mobile communications, mobile phone
Sieron-Stoltny K et al. 2017 animal, rat/ Wistar, whole body - 50 Hz–900 MHz - - mobile communications, mobile phone, magnetic field, 50/60 Hz, low frequency
Sieroń K et al. 2021 animal, rat/ Wistar, whole body redox balance 50 Hz - 22 h per day for 28 consecutive days mobile communications, mobile phone, RF field, low frequency, 50/60 Hz, electric field, power transmission line
Silva V et al. 2016 intact cell/cell culture, primary human thyroid cells (from normal thyroid tissue) - 895–900 MHz - - mobile phone, mobile communications
Simko M et al. 2006 intact cell/cell culture, Mono Mac 6 cells (human monocytes) stress protein expression and free radical release 1,800 MHz 2 W/kg continuous for 60 min GSM, mobile communications
Singh HP et al. 2012 plant, mung bean (<i>Vigna radiata</i>)/Wilczek, hypocotyls effects on plants: root growth (rhizogenesis) and oxidative stress 900 MHz - continuous for 0.5, 1, 2 h mobile phone, GSM, mobile communications
Singh KV et al. 2019 animal, rat/Wistar - 1,966.1 MHz - - mobile communications, mobile phone
Singh KV et al. 2020 animal, rat/Wistar - 1,966.1 MHz - - mobile communications, mobile phone, UMTS