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

1697 studies in total
  1. 738 studies
  2. 562 studies
  3. 511 studies
  4. 221 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
Sauter C et al. 2015 human, partial body: left side of the head working memory and attention, well-being 385 MHz 1.5–6 W/kg continuous for 2.5 hours TETRA/TETRAPOL, mobile communications
Deshmukh PS et al. 2015 animal, rat/Fischer 344, whole body cognitive function, Hsp70 protein expression and DNA damage in the rat brain 900 MHz 0.5853–0.6672 mW/kg continuous for 2 h/day, 5 days/week for 180 days mobile communications, microwaves, 2.45 GHz
Tang J et al. 2015 animal, rat/Sprague-Dawley, partial body: head relationship between memory function, blood brain barrier permeability and the mkp-1/ERK pathway in the rat brain 900 MHz 0.016–2 W/g continuous for 3 h/day for 14 days mobile phone, mobile communications
Bamiou DE et al. 2015 human, partial body: ear (each side) perception of verticality and horizontality 882 Hz 0.3–1.3 W/kg continuous for 2 x 30 minutes (30 minutes per ear) mobile phone, GSM, mobile communications, CW continuous wave
Movvahedi MM et al. 2014 human, partial body: ear - 900 MHz 1.45 W/kg - mobile phone, GSM, mobile communications
Klose M et al. 2014 animal, rat/Wistar (RccHan:WIST), partial body: head behavior, learning, memory and motor abilities 900 MHz 0.7–10 W/kg 5 to 120 min/day, 5 days/week from the age of 14 days to 19 months (5 min at the beginning and stepwise increase to 120 min within the next 7 days) mobile phone, GSM, mobile communications, PW pulsed wave
Shirai T et al. 2014 animal, rat/Sprague-Dawley, whole body fertility, development, brain functions and morphology of major organs of rats 2.14 GHz 0.034–0.244 W/g continuous for 20 h/day over 3 generations mobile phone, W-CDMA, mobile communications
Trunk A et al. 2014 human, partial body: head - - 0.73–2 W/kg - mobile phone, UMTS, mobile communications, co-exposure
Schneider J et al. 2014 animal, rat/Wistar albino - 900 MHz 0.4 W/kg - mobile phone, GSM, UMTS, mobile communications
Saikhedkar N et al. 2014 animal, rat/Wistar, whole body structure and function of the rat brain and oxidative stress 900 MHz 0.99 W/kg continuous for 4 h/day for 15 days mobile phone, mobile communications
de Caires Jr LC et al. 2014 animal, rat/Wistar, whole body effects on anxiety, working memory and stress 1,800 MHz - intermittent for 3 days (25 s phone calls every 2 min) mobile phone, GSM, mobile communications
Maaroufi K et al. 2014 animal, rat/Long-Evans, whole body level of dopamine and serotonin, oxidative stress in brain, spatial learning and memory 900 MHz 0.05–0.18 W/kg 1 hour per day for 21 consecutive days mobile phone, mobile communications, co-exposure
Ikinci A et al. 2013 animal, rat/Sprague-Dawley, whole body: <i>in utero</i> hippocampus morphology and learning behavior in rat pups 900 MHz - continuous for 1 h/day from day 13 to 21 of pregnancy mobile phone, mobile communications
Deshmukh PS et al. 2013 animal, rat/Fischer 344, whole body spatial memory and learning, oxidative stress in blood 900 MHz 84.738 µW/kg 2 h/day, 5 days a week for 30 days mobile phone, mobile communications, microwaves
Loughran SP et al. 2013 human, partial body: head waking EEG, cognitive performance 900 MHz 0.35–1.4 W/kg continuous for 30 min mobile phone, GSM, mobile communications, PW pulsed wave
Ntzouni MP et al. 2013 animal, mouse/C57BL/6J, whole body spatial and non-spatial memory performance 1,800 MHz 0.11 W/kg 90 min/day every day or every second day for up to 83 days (detailed description in "aim of study") mobile phone, GSM, mobile communications, co-exposure
Trunk A et al. 2013 human, partial body: head - 1,947 MHz 1.75–3.75 W/kg continuous for 30 min digital mobile phone, UMTS, mobile communications
Hao D et al. 2013 animal, rat/Wistar, whole body spatial learning and memory 916 MHz - continuous for 2 x 3 h/day (6 h/day), 5 days/week, 10 weeks mobile phone, mobile communications, RF field
Hao D et al. 2012 animal, rat/ Wistar, whole body - 916 MHz - - mobile communications, mobile phone, RF field
Megha K et al. 2012 animal, rat/Fischer 344, whole body oxidative stress and cytokine production in rat brain, spatial memory and learning 900 MHz 0.5835–0.5953 mW/kg 2 h/day, 5 days a week for 30 days mobile phone, mobile communications, microwaves
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
Bouji M et al. 2012 animal, rat/Sprague-Dawley, partial body: head astrocyte activation (glial fibrillary acidic protein (GFAP)), pro-inflammatory cytokine expression (interleukin), stress (corticosterone), emotional memory 900 MHz 6 W/kg continuous for 15 min digital mobile phone, GSM, mobile communications, PW pulsed wave
Mortazavi SM et al. 2012 human, partial body: right ear visual reaction time - 1.23 W/kg 5 x 10 min. (in random order with sham exposure and 30 min. rest in between) mobile phone, GSM, mobile communications
Aldad TS et al. 2012 animal, mouse/CD-1, whole body electrophysiological changes, memory 800–1,900 MHz 1.6 W/kg continuous for 0, 9, 15 or 24 hours/day on day 1-17 of gestation mobile phone, GSM, mobile communications
Cammaerts MC et al. 2012 invertebrate, ant (<i>Myrmica sabuleti</i>), whole body association between food sites and olfactory or visual cues 900 MHz - see add. information digital mobile phone, mobile phone base station, GSM, mobile communications
Vecchio F et al. 2012 human, partial body: left side of the head cortical activity (EEG), visual reaction time task 902.4 MHz 0.5 W/kg continuous for 45 min digital mobile phone, GSM, mobile communications, PW pulsed wave
Barth A et al. 2012 human, partial body: left or right side of the head cognitive performance 800–1,900 MHz - continuous for 25-1305 min or 3 times 15 min or 28 times 120 min digital mobile phone, GSM, UMTS, mobile communications, PW pulsed wave, theoretical/in silico study
Curcio G et al. 2012 human, partial body: right ear brain BOLD (blood-oxygen-level dependent) response, somatosensory reaction time task 902.4 MHz 0.212–1.25 W/kg continuous for 45 min digital mobile phone, GSM, mobile communications, PW pulsed wave
Wallace D et al. 2012 human, whole body cognitive function 420 MHz 217 µW/kg 25 min in session 1 (1 x 15 min and 2 x 5 min), 50 min each in session 2 and 3 mobile communications, mobile phone base station, TETRA/TETRAPOL, TDMA
Schmid MR et al. 2012 human, partial body: left side of the head working memory, attention, reaction time, polysomnography 900 MHz 2 W/kg continuous for 30 min. GSM, mobile communications, PW pulsed wave
Leung S et al. 2011 human, partial body: left/right hemisphere event-related potentials and performance during oddball paradigma and n-back task 894.6 MHz 0.7–1.7 W/kg continuous for 55 min GSM, W-CDMA, mobile communications
Hareuveny R et al. 2011 human, partial body: head (left or right side) spatial working memory 890.2 MHz 0.54–1.09 W/kg not specified in the article mobile phone, digital mobile phone, GSM, mobile communications
Ntzouni MP et al. 2011 animal, mouse/C57BL/6J, whole body recognition memory 1,800 MHz 0.22 W/kg 90 min/day for 3 days (acute exposure), 17 days (chronic exposure-I) or 31 days (chronic exposure-II) mobile phone, digital mobile phone, GSM, mobile communications
Sauter C et al. 2011 human, partial body: head attention and working memory 900 MHz 7.82–10.98 W/kg 3 days (à 7 h 15 minutes), separated by at least two week intervals mobile phone, GSM, UMTS, W-CDMA, mobile communications
Riddervold IS et al. 2010 human, partial body: left side of the head cognitive performance, subjective symptoms 420 MHz 2 W/kg 45 min in 1 min sequences of 54 s on - 6 s off mobile communications, TETRA/TETRAPOL
Narayanan SN et al. 2010 animal, rat/Wistar albino, whole body hippocampus morphology, passive avoidance behaviour 0.9–1.8 GHz - 50 times 45 s/h once per day for 4 weeks mobile phone, GSM, mobile communications
Fragopoulou AF et al. 2010 animal, mouse/BALB/c, whole body learning and spatial memory 900 MHz 0.41–0.98 W/kg 1 h 55 min. for the first 3 days (1 h prior to the first trial, 3 x 15 min. between trials, 10 min. after the last trial); 3 hr 45 min. on the fourth days (1 h prior to the first trial, 3 x 15 min. between trials, 2 h prior to the probe trial) mobile communications, digital mobile phone, GSM, PW pulsed wave
Kwon MS et al. 2010 human, partial body: left and right side of the head (temporal area) event-related potentials/mismatch negativity, auditory sensory memory of children 902 MHz 0.82–1.21 W/kg 6 min blocks, 3 blocks on one ear - then 3 blocks on the other ear; each three block sequence consisted of one block EMF off, 2 blocks EMF on mobile phone, GSM, mobile communications
Arendash GW et al. 2010 hippocampus homogenates, animal, mouse/transgenic (A&beta;PPsw) and non-transgenic littermate, whole body Alzheimer's disease, cognitive performance 918 MHz 250 mW/kg 2 times (early morning and late afternoon) 1 h/day for 9.5 months mobile phone, mobile communications, therapeutic/medical device
Moghimi A et al. 2009 animal, mouse/BALB/c - - - - GSM, mobile communications, mobile phone, microwaves, RF field
Jadidi M et al. 2009 animal, rat/Wistar - 950 MHz 0.03–0.05 W/kg for 45 min before each training block (LDP or HDP field) mobile phone, GSM, mobile communications
Daniels WM et al. 2009 animal, rat/Sprague-Dawley, whole body learning and memory, emotional states, corticosterone levels, and brain histology 840 MHz - continuous for 3 hr/day from day 2 to day 14 after birth mobile phone, mobile communications
Eltiti S et al. 2009 human, whole body cognitive functioning: short-term memory, attention and perceptual motor speed, working memory, blood volume pulse, heart rate, skin conductance 900–1,800 MHz - continuous for 50 min mobile phone base station, GSM, UMTS, mobile communications
Narayanan SN et al. 2009 animal, rat/Wistar albino, whole body spatial memory performance 900–1,800 MHz - 50 missed calls/day, separated by 15 s intervals, for 4 weeks mobile communications, digital mobile phone, GSM
Luria R et al. 2009 human, partial body: head (left or right side) spatial working memory 890.2 MHz 0.54–1.09 W/kg 1 h mobile phone, GSM, mobile communications
Wiholm C et al. 2009 human, partial body: head, ear (left hemisphere) spatial memory and learning 884 MHz 0.23–1.95 W/kg continuous for 2.5 h digital mobile phone, GSM, mobile communications
Cinel C et al. 2008 human, partial body: right or left ear short-term memory, vigilance, attention 888 MHz 1.4–11.2 W/kg continuous for 45 min (experiment 1) or 40 min (experiment 2) mobile phone, digital mobile phone, GSM, mobile communications, RF field
Ammari M et al. 2008 animal, rat/Sprague-Dawley, partial body: head spatial memory 900 MHz 1.5–6 W/kg 45 min/day, 5 days/week for 8 weeks or 24 weeks mobile phone, digital mobile phone, GSM, mobile communications
Grafstrom G et al. 2008 animal, rat/Fischer 344, whole body neuronal damage, blood-brain barrier permeability and effects on ageing process and memory 900 MHz 0.6–60 mW/kg 2 hr/week for 55 weeks mobile phone, digital mobile phone, GSM, mobile communications
Kleinlogel H et al. 2008 human, partial body: left ear effects on event related potentials and cognitive function 0.9 GHz 0.1–1 W/kg continuous for about 30 min digital mobile phone, GSM, UMTS, CDMA, mobile communications