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

1711 studies in total
  1. 747 studies
  2. 570 studies
  3. 512 studies
  4. 225 studies
  5. 205 studies
  6. 118 studies

Other

205 studies in total
  1. 124 studies
  2. 62 studies
  3. 35 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Kang KA et al. 2014 intact cell/cell culture, NIH3T3 cells (mouse fibroblasts), U87 (human glioma cells), PC12 (rat pheochromocytoma cells), SH-SY5Y (human neuroblastoma cells) cell viability, oxidative stress 837–1,950 MHz 2 W/kg continuous for 2 hours mobile phone, CDMA, W-CDMA, mobile communications, co-exposure
Karatas SM et al. 2021 bacterium - 1,800 MHz - - GSM, mobile communications
Kaya FA et al. 2008 animal, rat/Wistar albino - 900 MHz - - mobile communications, GSM, mobile phone, microwaves
Koca O et al. 2013 animal, rat/Wistar albino, whole body histopathologic changes in the kidney 1,800 MHz 1.52 W/kg 8 h/day speech mode, 16 h/day standby mode for 20 days mobile phone, mobile communications, CW continuous wave
Kowalczuk C et al. 2010 intact cell/cell culture, tissue slices, cell suspensions, IMR 32 (human neuroblastoma cells), G361 (human melanoma cells), HF-19 (human fibroblasts), N2a (murine neuroblastoma cells; differentiated and non-differentiated); CHO (Chinese hamster ovary) cells demodulation ability of living cells and tissues (second harmonic generation) 880–890 MHz 2.5–10.6 mW/g < 10 minutes (typically, a second harmonic test took around 2-3 min.) mobile phone, mobile communications, RF field, CW continuous wave
Kumar NR et al. 2011 invertebrate, honeybee (<i>Apis mellifera</i> L.) metabolism of honey bees - - continuous for 10, 20 or 40 min mobile phone, mobile communications
Kwon MK et al. 2012 human, partial body: head - 1,950 MHz 1.6 W/kg continuous for 32 min digital mobile phone, W-CDMA, mobile communications, microwaves
Kwon MK et al. 2012 human, partial body: head - 1,950 MHz 1.57 W/kg - mobile phone, W-CDMA, mobile communications
Lee KS et al. 2008 invertebrate, <i>Drosophila melanogaster</i>/<i>Oregon-R</i>, wild type, <i>Actin5C-Gal4</i>, <i>UAS-SOD1IR</i>, and <i>UAS-SOD2IR</i>, whole body survival rate of <i>Drosophila melanogaster</i> 835 MHz 1.6–4 W/kg continuous for 6, 12, 18, 24, 30, and 36 h mobile communications, mobile phone
Lerchl A et al. 2008 animal, Djungarian hamster (<i>Phodopus sungorus</i>), whole body metabolic effects (body weight, melatonin levels) 383 MHz 80 mW/kg continuous for 60 days digital mobile phone, GSM, TETRA/TETRAPOL, mobile communications
Lindholm H et al. 2011 human, partial body: head (right ear) head temperature 902.4 MHz 0.66–4.3 W/kg continuous for 15 min digital mobile phone, GSM, mobile communications
Mady MM et al. 2012 artifical biological membranes in aqueous solutions (phospholipids; dipalmitoylphosphatidycholine (DPPC)) structural and functional properties of liposomes 950 MHz - continuous for 1 and 2 hours mobile phone, mobile communications, RF field, microwaves
Meo SA et al. 2013 animal, rat/Wistar albino, whole body insulin level in serum, fasting blood glucose level 1,800 MHz - less than 15 min/day for 3 month mobile phone, GSM, mobile communications
Meral I et al. 2007 animal, guinea pig, whole body different blood vitamin levels, oxidative stress in the brain 890–915 MHz 0.95 W/kg continuous for 12 h/day (11 h 45 min stand-by mode, 15 min speaking mode) on 30 days mobile communications, mobile phone, RF field
Mohammadpour-Aghdam M et al. 2020 isolated bio./chem. substance, recombinant human growth hormone - 940 MHz - - mobile communications, mobile phone
Mohite MT et al. 2023 isolated bio./chem. substance, gliclazide tablets - - - - mobile communications, mobile phone
Molina-Montenegro MA et al. 2023 invertebrate, honey bee (<i>Apis mellifera</i>) and other pollinators - - - - mobile communications, mobile phone base station, power transmission line, magnetic field
Mortazavi S et al. 2013 animal, mouse/BALB/c and rat/Wistar, whole body survival rate 900 MHz - mice: 6 h/day for 5 days; rats: 6 h/day for 6 days (or 4 days?, contradictory information) mobile phone, GSM, mobile communications, co-exposure
Mortazavi SM et al. 2014 animal, mouse/BALB/c, partial body: head survival rate of mice - 1.4 W/kg continuous for 2 hours/day for 3 days mobile phone, GSM, mobile communications, co-exposure
Mortazavi SM et al. 2015 isolated organ, isolated gastrocnemius muscles, frog, animal, frog, whole body - - - - mobile phone, GSM, mobile communications
Mortazavi SMJ et al. 2011 animal, rat/Sprague-Dawley - 900–1,800 MHz - 2 times 3 h/day for 4 days mobile phone, GSM, mobile communications, microwaves, PW pulsed wave, also other exposures without EMF, co-exposure
Mortazavi SMJ et al. 2012 animal, mouse/BALB/c, partial body: head survival rate of mice - 1.4 W/kg continuous for 2 hours/day for 3 days mobile communications, mobile phone, GSM, co-exposure
Mousavy SJ et al. 2009 isolated bio./chem. substance, hemoglobin solution structure and function of hemoglobin 910–940 MHz - continuous for 1 h or 2 h mobile phone, mobile communications, RF field, CW continuous wave
Movahedi MM et al. 2019 bacterium, <i>Pseudomonas aeruginosa</i>, <i>Staphylococcus aureus</i> - 900 MHz - - mobile communications, mobile phone
Nakamura H et al. 2003 animal, rat/Wistar, whole body utero-placental blood flow, endocrine changes, effects on immunological system 915 MHz 0.4–2 W/kg continuous for 90 min mobile communications, mobile phone, microwaves