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

Cell functions

118 studies in total
  1. 40 studies
  2. 35 studies
  3. 29 studies
  4. 21 studies
Authors Year Exposed system Endpoints Frequency range SAR Exposure duration Parameters
Kim JH et al. 2018 animal, mouse/C57BL/6 - 835 MHz - - mobile communications, RF field
Köhler T et al. 2018 intact cell/cell culture, primary cortex neurons of Sprague Dawley rats - 395 MHz - - TETRA/TETRAPOL, mobile communications
Ruigrok HJ et al. 2018 intact cell/cell culture, HEK 293T cells (human embryonic kidney cells) - 1,800 MHz - - GSM, LTE, UMTS, mobile communications, CW continuous wave, W-LAN/WiFi
Olgar Y et al. 2015 - - 2.1 GHz - - mobile phone, GSM, mobile communications
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
Naziroglu M et al. 2015 intact cell/cell culture, hippocampal neurons (from Wistar rats) - 900 MHz - - mobile phone, mobile communications
Lu Y et al. 2014 intact cell/cell culture, N9 cells (mouse microglial cells) and C8-D1A cells (mouse astrocyte type I cells) proinflammatory protein expression and gene expression; nitric oxide release; STAT3 activation, activation of microglia and astrocytes 1,800 MHz 2 W/kg intermittent for 1, 3, 6, 12, or 24 hours (5 min on and 10 min off) mobile phone, mobile communications, RF field, PW pulsed wave
Chen C et al. 2014 intact cell/cell culture, embryonic neural stem cells (mouse/BALB/c) differentiation, cell growth and cell viability of neural stem cells 1,800 MHz 1–4 W/kg intermittent for 1 to 3 days (5 min field on, 10 min field off) mobile phone, GSM, mobile communications
Ahlers MT et al. 2014 retinal ganglion cells responses to light stimuli 900 MHz 0.02–20 W/kg 30 minutes (three blocks of 10 minutes, respectively) mobile phone, GSM, UMTS, mobile communications
Moretti D et al. 2013 intact cell/cell culture, primary cortical neurons (of rat embryos) electrical activity of neurons 1,800 MHz 3.2 W/kg continuous for 3 minutes mobile phone, GSM, mobile communications