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

Brain

510 studies in total
  1. 153 studies
  2. 148 studies
  3. 141 studies
  4. 79 studies
  5. 35 studies
  6. 35 studies
  7. 18 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Maby E et al. 2004 human, partial body: left or right ear cerebral activity (auditory evoked potentials) 900 MHz 1.4 W/kg - GSM, mobile communications
Maby E et al. 2005 human, partial body: right ear cerebral activity (auditory evoked potentials) 900 MHz 1.4 W/kg - GSM, mobile communications
Maby E et al. 2006 human, partial body: head (right ear) auditory evoked potentials 900 MHz 1.4 W/kg continuous for a part of the session lasting about 500 s digital mobile phone, GSM, mobile communications
Maby E et al. 2006 human brain activity 900 MHz - continuous for 250 s? digital mobile phone, GSM, mobile communications
Maganioti AE et al. 2010 human, partial body: right ear EEG: changes in event-related potentials during a memory task (P600 wave form) 900 MHz - about 45 min. mobile phone, mobile communications, RF field
Mahajan R et al. 2019 human, partial body - - - - mobile communications, mobile phone
Marino AA et al. 2003 animal, rabbit/New Zealand, partial body: head; thoracic region brain electrical activity 824–849 MHz - intermittent, 2 s on/5 s off (one trial) for a total of 60 trials TDMA, mobile communications
Marino AA et al. 2016 human, partial body - 1 GHz - - mobile phone, mobile communications, CW continuous wave
Mausset-Bonnefont AL et al. 2004 animal, rat/Wistar, partial body: head response of the brain 900 MHz 6 W/kg continuous for 15 min GSM, mobile communications, microwaves
Mohan M et al. 2016 human auditory evoked potentials - - mobile phone usage for < 5 years mobile phone, mobile communications
Mori T et al. 2011 animal, mouse/APPswe (transgenic) and non-transgenic littermates - 918 MHz - - mobile communications, GSM, mobile phone, PW pulsed wave, RF field
Nakatani-Enomoto S et al. 2020 human - 1,950 MHz - - mobile communications, mobile phone, LTE, RF field
Nakra A et al. 2015 human - - - - mobile communications, mobile phone, GSM, Bluetooth
Nanou E et al. 2005 human, partial body: head EEG during an auditory memory task 900 MHz - continuous for about 45 min mobile communications, mobile phone
Nanou E et al. 2009 human, partial body: right ear EEG 1,800 MHz - continuous for 45 min mobile phone, mobile communications, RF field
Occelli F et al. 2018 animal, rat/Wistar, partial body - 1,800 MHz - - GSM, mobile communications, RF field
Orlacchio R et al. 2022 animal, mouse/C57BL/6 - 1.8 GHz - - mobile communications, GSM, mobile phone, CW continuous wave
Oysu C et al. 2005 human, partial body: ear auditory brainstem response 900 MHz 0.82 W/kg continuous for 15 min digital mobile phone, mobile communications
Papageorgiou CC et al. 2004 human, partial body: right ear brain activity/EEG 900 MHz - continuous for about 45 min mobile communications, mobile phone
Papageorgiou CC et al. 2006 human, partial body: head (right ear) brain activity 900 MHz - not specified mobile communications, mobile phone
Parmar K et al. 2019 human - - - - mobile phone, mobile communications
Pattnaik S et al. 2019 human, partial body - - - - mobile communications, mobile phone, GSM, W-CDMA
Pattnaik S et al. 2022 human - - - - mobile communications, mobile phone, GSM, W-CDMA
Perentos N et al. 2007 human, partial body: left hemisphere EEG pattern 900 MHz 1.56 W/kg intermittent, 3 x 15 min, see add. information digital mobile phone, GSM, mobile communications
Perentos N et al. 2008 human, partial body: right ear resting EEG 2–217 Hz - continuous for 20 min digital mobile phone, GSM, mobile communications, RF field, magnetic field, low frequency